<?xml version="1.0" encoding="utf-8"?>
<journal>
  <titleid>https://www.elibrary.ru/title_about_new.asp?i</titleid>
  <issn>2782-6724</issn>
  <journalInfo lang="ENG">
    <title>Global Energy</title>
  </journalInfo>
  <issue>
    <number>2</number>
    <altNumber>171</altNumber>
    <dateUni>2013</dateUni>
    <pages/>
    <articles>
      <article>
        <artType>REV</artType>
        <langPubl>RUS</langPubl>
        <pages>10-16</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Gusev</surname>
              <initials>Boris</initials>
              <email>info-rae@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Russian Academy of Engineering at the present stage</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article article summarizes 20 years of experience in the Russian Engineering Academy (RIA), the main trends in carrying out RIA innovative programs, shows the operation of regional structures of the academy. Much work has been done on the organization of international and all-Russian Forum. </abstract>
        </abstracts>
        <codes>
          <udk>001:60</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>ACADEMY</keyword>
            <keyword>INNOVATIVE PROGRAMS</keyword>
            <keyword>REGIONS</keyword>
            <keyword>FORUMS</keyword>
            <keyword>THE EDUCATION SYSTEM</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.1/</furl>
          <file>2_gusev.pdf</file>
        </files>
      </article>
      <article>
        <artType>REV</artType>
        <langPubl>RUS</langPubl>
        <pages>17-24</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <scopusid>7102629343</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Vasil'ev</surname>
              <initials>Yuriy</initials>
              <email>interserv@spbstu.ru</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">On the contribution of the Polytechnic University of complex defenses Saint-Petersburg flood</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">With the construction complex of protective installations problem was solved of the protection St. Petersburg from flooding. For three centuries, flood hazard threatened the city. On different stages of the grand projectis essentially project of the century was attended by professors, lecturers and graduates of Polytechnic University. In the published in the journal article is short and pithy stated.</abstract>
        </abstracts>
        <codes>
          <udk>626:627</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>COMPLEX OF PROTECTIVE STRUCTURES</keyword>
            <keyword>POLYTECHNIC UNIVERSITY</keyword>
            <keyword>FLOODING</keyword>
            <keyword>NAVIGATION PASS  AND CULVERTS</keyword>
            <keyword>DAMS</keyword>
            <keyword>TUNNELS</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.2/</furl>
          <file>3_vasiliev.pdf</file>
        </files>
      </article>
      <article>
        <artType>REV</artType>
        <langPubl>RUS</langPubl>
        <pages>25-30</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Degtyareva</surname>
              <initials>Raisa</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The restructuring of the polytechnic university</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Article is devoted to the reorganization of the St. Petersburg State Polytechnic University, the structure of management of high school. The creation of basic structural divisions-training institutions.</abstract>
        </abstracts>
        <codes>
          <udk>378.1</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>UNIVERSITY</keyword>
            <keyword>REORGANIZATION</keyword>
            <keyword>STRUCTURE</keyword>
            <keyword>INSTITUTE</keyword>
            <keyword>DEPARTMENT</keyword>
            <keyword>THE SCIENTIFIC COUNCIL</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.3/</furl>
          <file>4_degtyareva.pdf</file>
        </files>
      </article>
      <article>
        <artType>REV</artType>
        <langPubl>RUS</langPubl>
        <pages>31-37</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Popovich</surname>
              <initials>Anatoliy</initials>
              <email>popovicha@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Becoming of the Joint Science and Technology Institute</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article describes the stages of formation of the Joint Science and Technology Institute. The Insti-tute was founded in 2010 as part of of development SPbSPU as a national research university.</abstract>
        </abstracts>
        <codes>
          <udk>60:378.1</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>UNIVERSITY</keyword>
            <keyword>INTEGRATION</keyword>
            <keyword>SCIENTIFIC TECHNOLOGICAL</keyword>
            <keyword>INTEGRATED PROJECTS</keyword>
            <keyword>INNOVATION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.4/</furl>
          <file>5_popovich.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>38-43</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Zheleznyakov</surname>
              <initials>Alexander</initials>
              <email>zheleznyakov@rtc.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Korablev</surname>
              <initials>Vadim</initials>
              <email>korablev@spbcas.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">From «Ariabady» before the flight to Mars</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Analyzed the main stages of formation of space programs of India. Of particular attention was paid present state the Indian space industry and its future developments and trends of the coming years.</abstract>
        </abstracts>
        <codes>
          <udk>629.78</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>SPACE</keyword>
            <keyword>INDIA</keyword>
            <keyword>SPACE COMMUNICATIONS SPACE STATIONS</keyword>
            <keyword>MARS</keyword>
            <keyword>MISSILE TECHNOLOGY</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.5/</furl>
          <file>6_zheleznyakov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>42-51</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Belyaev</surname>
              <initials>Nikolay</initials>
              <email>Belyaev.NA@yandex.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Egorov</surname>
              <initials>Andrey</initials>
              <email>egorov_a@ntcees.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <authorCodes>
              <researcherid>B-7916-2013</researcherid>
              <scopusid>6601971248</scopusid>
              <orcid>0000-0002-1173-8727</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Korovkin</surname>
              <initials>Nikolay</initials>
              <email>nikolay.korovkin@gmail.com</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Chudny</surname>
              <initials>Vladimir</initials>
              <email>Chudnyvs@yandex.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Resource adequacy analysis as a pressing problem of progress of russian power networks</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the paper are considered the pressing problems of power system adequacy. Basic calculating methods and models of factors of resource adequacy are investigated and validity range of these methods and models are determined. The mathematical statement of problem of power reserve in power network is described.</abstract>
        </abstracts>
        <codes>
          <udk>621.311</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>RESOURCE ADEQUACY</keyword>
            <keyword>POWER SYSTEM</keyword>
            <keyword>POWER RESERVE</keyword>
            <keyword>CAPACITY ADEQUACY</keyword>
            <keyword>ELECTRICITY CONSUMPTION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.6/</furl>
          <file>7_belyaev.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>52-60</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Borishanskii</surname>
              <initials>Konstantin</initials>
              <email>knb37@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Differets forms of steam turbines blades flutter and methods of flutter prevention</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Different forms of last stages turbines blades flutter are observed. Analysis of experimental data, received in service, is realized. Recommendations concerning reduction of flutter danger are formulated.</abstract>
        </abstracts>
        <codes>
          <udk>621.165</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>STEAM TURBINE</keyword>
            <keyword>BLADE</keyword>
            <keyword>FLUTTER</keyword>
            <keyword>DISCRETE-PHASE METHOD</keyword>
            <keyword>VIBRATION RELIABILITY</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.7/</furl>
          <file>8.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>61-67</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Galyshev</surname>
              <initials>Yuriy</initials>
              <email>galyshev57@yandex.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Shabanov</surname>
              <initials>Alexander</initials>
              <email>aush2003@mail.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Zaitsev</surname>
              <initials>Alexey</initials>
              <email>abzaytsev@mail.ru</email>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Metelev</surname>
              <initials>Andrey</initials>
              <email>petmet@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The effect of electromagnetic effects on performance and characteristics of motor vehicle fuel combustion engines</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The results of studies of the effect of electromagnetic field on the parameters of hydrocarbon fuel and change the performance of the full-scale engines (gasoline VAZ-2111 and diesel JAMZ-238) on the treated fuel. </abstract>
        </abstracts>
        <codes>
          <udk>631.43</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>ELECTROMAGNETIC FIELD</keyword>
            <keyword>THE INTERNAL COMBUSTION ENGINE</keyword>
            <keyword>FUEL</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.8/</furl>
          <file>9_galyshev.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>68-72</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Batuhtin</surname>
              <initials>Andrey</initials>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Kobylkin</surname>
              <initials>Mihail</initials>
              <email>mkchita@gmail.com</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Automated control system coolant flow for heat group consumer</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article describes an automated control system to regulate the heat demand of consumer groups without having to install a complete set of automation devices on each consumer. A scheme and the principle of the system, evaluate the effectiveness of the example of building the Zabaikalsky State University, and is also considered the possibility of using the system to control large groups of consumers.</abstract>
        </abstracts>
        <codes>
          <udk>62-50</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>REGULATION</keyword>
            <keyword>HEAT</keyword>
            <keyword>TEMPERATURE</keyword>
            <keyword>FLOW</keyword>
            <keyword>HEAT TRANSFER FLUIDS</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.9/</furl>
          <file>10_batuhtin.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>73-79</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Lapshin</surname>
              <initials>Kirill</initials>
              <email>kirill.lapschin@gmail.com</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Features of computer optimization of gas turbine flow areas with sliding of rotors</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The mathematical models of the design gas-dynamic calculation of the gas turbine in «liquid» and «solid» meridian borders of area of the flow are considered. Sliding of the rotors is taken into account. Provisions of the theory are illustrated by the example of computer optimization of four stage dual rotor gas turbine of turboshaft engine for helicopter. </abstract>
        </abstracts>
        <codes>
          <udk>621.438. 001.2</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>GAS TURBINE</keyword>
            <keyword>FLOW AREA</keyword>
            <keyword>SLIDING OF ROTORS</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.10/</furl>
          <file>11_lapschin.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>80-84</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Bass</surname>
              <initials>Maxim</initials>
              <email>bms77@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Batuhtin</surname>
              <initials>Andrey</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Trebunskikh</surname>
              <initials>Sergey</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Methodological issues for evaluating effectiveness district heating systems</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The estimation of the methods of increasing to efficiency of the systems of the centralized supply possible only on base of the complex analysis, taking into account intercoupling between physical regularity production and transformations to heat energy and particularity to cost-performance investment.</abstract>
        </abstracts>
        <codes>
          <udk>620.92:621.1</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>ENTROPY</keyword>
            <keyword>ENTROPY PRODUCTION</keyword>
            <keyword>THERMAL ENERGY</keyword>
            <keyword>HEATING</keyword>
            <keyword>THERMODYNAMIC CYCLE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.11/</furl>
          <file>12_bass.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>85-94</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Sokolov</surname>
              <initials>Nikolay</initials>
              <email>visantiya@freemail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Polishchuk</surname>
              <initials>Vladimir</initials>
              <email>visantiya@freemail.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Andreev</surname>
              <initials>Konstantin</initials>
              <email>visantiya@freemail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The hydraulic resistances in the rectangular cross-section channels with crossed ribs</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The review of papers on the experimental investigations of the hydraulic characteristics of the coplanar channels tracts (the channels with crossed ribs) is made. The comparison analysis of the results of the experimental investigations of the hydraulic resistances coefficients in the coplanar channels tracts is carried out.</abstract>
        </abstracts>
        <codes>
          <udk>536.245</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>COPLANAR CHANNELS</keyword>
            <keyword>VORTICAL CHANNELS</keyword>
            <keyword>CROSSED RIBS</keyword>
            <keyword>HYDRAULIC RESISTANCE</keyword>
            <keyword>EXPERIMENTAL INVESTIGATION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.12/</furl>
          <file>13_sokolov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>95-101</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Zolotykh</surname>
              <initials>Andrey</initials>
              <email>andrey.zolotykh@streamer.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Halilov</surname>
              <initials>Firudin</initials>
              <email>natalia-shilina@yandex.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Requirements for protective devices neutral power transformers 6–35 kV</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Analyzed faults of transformers, associated with neutral and ground-fault neutralizers. It is shown that the cause of the accident is a pulse overvoltage characteristics and the wrong choice of protective devices. The results of the surges exploration are given. The technical requirements for protective devices at 6, 10 and 35 kV are given.</abstract>
        </abstracts>
        <codes>
          <udk>621.31.015.038</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>NEUTRAL TRANSFORMERS</keyword>
            <keyword>OVERVOLTAGE</keyword>
            <keyword>INSULATION</keyword>
            <keyword>COORDINATION OF INSULATION</keyword>
            <keyword>PROTECTIVE DEVICES</keyword>
            <keyword>SURGE ARRESTERS</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.13/</furl>
          <file>14_zolotykh.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>102-108</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Popovich</surname>
              <initials>Anatoliy</initials>
              <email>popovicha@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Wang</surname>
              <initials>Qing</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Research technology receipt of cathode material Li[2]FeSiO[4]</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Currently improving lithium-ion batteries developed towards the development of new cathode nanostructured materials. Largest interest has to cathode materials based on lithium silicate — Li2FeSiO4. The main drawback of existing technologies — low electrochemical properties. In this paper research new technology of obtaining Li2FeSiO4 — crystallization from amorphous state. Phase composition was determined on Bruker D8 ADVANCE diffractometer in CuKa-radiation. The fine structure was studied using transmission electron microscopy Technai S-Twin G230, the distribution of elements on the particle was studied using a scanning electron microscope Mira Tescan. </abstract>
        </abstracts>
        <codes>
          <udk>66.017</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>CATHODE</keyword>
            <keyword>LITHIUM-ION BATTERY</keyword>
            <keyword>LITHIUM</keyword>
            <keyword>SILICATE</keyword>
            <keyword>CRYSTALLIZATION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.14/</furl>
          <file>15_popovich.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>109-119</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Anastasiadi</surname>
              <initials>Grigory</initials>
            </individInfo>
          </author>
          <author num="002">
            <authorCodes>
              <researcherid>A-9655-2014</researcherid>
              <scopusid>7007045735</scopusid>
              <orcid>0000-0001-7385-147X</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Kondrat'ev</surname>
              <initials>Sergey</initials>
              <email>petroprom2013@yandex.ru</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Orischenko</surname>
              <initials>Alexey</initials>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Fuks</surname>
              <initials>Mihail</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The effect of cooling speed by technological thermal cycling on the long-term strength of cast heat-resistant alloy 45Cr26Ni33Si2Nb2</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Experimentally determined was a long-term strength of cast superalloy 45Cr26Ni33Si2Nb2 at 1150 °C after preliminary curing at 1150°C during 2 to 100 hours, followed by cooling in water. It was found that rapid cooling from the operating temperature to room temperature during the initial period of operation contributes to long-term strength of Fe-Cr-Ni-based alloys compared to cast state and largely prevents reduction of performance characteristics of superalloys based on the system Fe-Cr-Ni during operation.</abstract>
        </abstracts>
        <codes>
          <udk>669.1.017:669.018.44:669:018.28:621.74.011</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>CAST HEAT-RESISTANT ALLOYS</keyword>
            <keyword>LONG-TERM STRENGTH</keyword>
            <keyword>HEAT TREATMENT</keyword>
            <keyword>REMAINING LIFE OF  THE HIGH-TEMPERATURE EQUIPMENT</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.15/</furl>
          <file>16_anastasiadi.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>120-124</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Popovich</surname>
              <initials>Anatoliy</initials>
              <email>popovicha@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Razumov</surname>
              <initials>Nikolay</initials>
              <email>n.razumov@inbox.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Silin</surname>
              <initials>Alexey</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Research phase formation in Fe-Ni system by mechanical alloying</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Shown that mechanical activation iron powders and their alloys in air leads to a significant oxidation. To prevent oxidation, mechanical activation of Fe-Ni alloy was conducted in atmosphere of ammonia. It was found that mechanical activation Fe-Ni alloy in atmosphere ammonia leads to saturation with nitrogen, increasing mechanical activation time content γ-phase increases.</abstract>
        </abstracts>
        <codes>
          <udk>669.15</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>AMMONIA</keyword>
            <keyword>INVAR</keyword>
            <keyword>MECHANICALL ALLOYING</keyword>
            <keyword>SYNTESIS</keyword>
            <keyword>AMMONIA</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.16/</furl>
          <file>17_popovich.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>125-132</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Turichin</surname>
              <initials>Gleb</initials>
              <email>ballak@inbox.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Lopota</surname>
              <initials>Vitaliy</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Shamshurin</surname>
              <initials>Аlexey</initials>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Klimova</surname>
              <initials>Olga</initials>
              <email>paniolia@list.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Structure features of the metal welded by electron beam welding of dissimilar materials</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Work describes research results of a structure, joining dissimilar materials, obtained with electron-beam welding. Temperature quality of the welding area was evaluated with mathematical simulation. Aluminum and copper steels were welded together. Weld and near-weld area chemical and structural compositions were observed with modern metallographic methods and scanning electron microscopy technic. Main patterns of metall microstructure formation in weld zone were established. Chemical component distribution in a weld area was analyzed.</abstract>
        </abstracts>
        <codes>
          <udk>669.1</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>WELDING OF DISSIMILAR MATERIALS</keyword>
            <keyword>ELECTRON BEAM WELDING</keyword>
            <keyword>STEEL</keyword>
            <keyword>COPPER</keyword>
            <keyword>ALUMINUM</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.17/</furl>
          <file>18_klimova.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>133-137</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Yurkinsky</surname>
              <initials>Vladimir</initials>
              <email>jurkinskij@rambler.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Firsova</surname>
              <initials>Elena</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Okovity</surname>
              <initials>Vladislav</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The effect of carbon steel (types steel C1020) AND stainless steel (types steel 321) oxidation technique on the porosity of oxide coatings</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The oxidation of сarbon steel types C1020 and stainless steel types 321 by thermal, chemical and anodic techniques is studied, and the porosity of the obtained oxidе сoatings is determined.</abstract>
        </abstracts>
        <codes>
          <udk>620.193</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>THERMAL OXIDATION</keyword>
            <keyword>CHEMICAL OXIDATION</keyword>
            <keyword>ANODIC OXIDATION</keyword>
            <keyword>OXIDE COATINGS</keyword>
            <keyword>POROSITY</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.18/</furl>
          <file>19_yurkinsky.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>138-145</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Demidov</surname>
              <initials>Alexander</initials>
              <email>ph-chem@ftim.spbstu.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Markelov</surname>
              <initials>Iliya</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Thermodynamics of interaction of iron oxides with graphite taking into account  the changing of wustite composition with temperature in the temperature range 900–1600 K</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In this paper values for the standard Gibbs free energy of the reactions of interaction of iron oxides with graphite were calculated in the temperature range 900–1600 K per 1 mole of precursor atoms. The results were compared with experimental kinetic data.</abstract>
        </abstracts>
        <codes>
          <udk>669.2</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>THERMODYNAMICS</keyword>
            <keyword>REDUCTION</keyword>
            <keyword>IRON OXIDES</keyword>
            <keyword>WUSTITE</keyword>
            <keyword>GRAPHITE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.19/</furl>
          <file>20.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>146-150</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Fomin</surname>
              <initials>Dmitry</initials>
              <email>DmitryFMN@yandex.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Structure formation in austenitic steels under forging in open stamps</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Recrystallization in austenitic steels under thermomechanical treatment for the process of forging metal performs in open stamps are observed. Structural transformations on the sub- structural level of austenitic steel are analyzed. </abstract>
        </abstracts>
        <codes>
          <udk>621.9.011</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>THERMOMECHANICAL TREATMENT</keyword>
            <keyword>FORGING</keyword>
            <keyword>OPEN STAMP</keyword>
            <keyword>TRANSLUCENT ELECTRON MICROSCOPY</keyword>
            <keyword>SUBSTRUCTURE</keyword>
            <keyword>RECRYSTALLIZATION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.20/</furl>
          <file>21_fomin.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>151-157</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Baimakov</surname>
              <initials>Alexander</initials>
              <email>lmpa2010@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Petrovich</surname>
              <initials>Sergey</initials>
              <email>lmpa2010@mail.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Lipin</surname>
              <initials>Vadim</initials>
              <email>vadim.lipin@km.ru</email>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Shahmin</surname>
              <initials>Alexander</initials>
              <email>alshakhmin@yandex.ru</email>
            </individInfo>
          </author>
          <author num="005">
            <individInfo lang="ENG">
              <surname>Eremin</surname>
              <initials>Evgeny</initials>
              <email>lmpa2010@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Hydrogen generation at interaction of powders of metals and aluminum-magnesium system alloys with water, acid and alkaline solutions</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Interaction of powders of aluminum, magnesium and their alloys with water, NaOH solution (рН= 11) and HCl (рН = 3) is investigated. By the method of X-ray Photoelectron Spectroscopy at «Nano-Fab 25» setting studies phase structure formed оксидной a film on a surface of particles of powders. Dependence of allocation of hydrogen on structure of an alloy and рН solution is defined. For generators of hydrogen and heatforming devices optimum use of powder of aluminum and NaOH solution.</abstract>
        </abstracts>
        <codes>
          <udk>669.762.2:669.761</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>ALUMINIUM</keyword>
            <keyword>MAGNESIUM</keyword>
            <keyword>ALLOY</keyword>
            <keyword>POWDER</keyword>
            <keyword>SURFACE</keyword>
            <keyword>OXIDATION</keyword>
            <keyword>ALUMINATE</keyword>
            <keyword>HYDROGEN</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.21/</furl>
          <file>22_baimakov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>158-164</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Kretysheva</surname>
              <initials>Irina</initials>
              <email>kresch86@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Mishin</surname>
              <initials>Maxim</initials>
              <email>maximvmishin@gmail.com, mmishin@spbstu.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Alexandrov</surname>
              <initials>Sergey</initials>
              <email>salexandrov@spbstu.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Some regularities of formation of silicon dioxide nanoparticles in low temperature atmospheric pressure plasma</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In this paper some regularities of formation of silicon oxide nanoparticles from TEOS in atmospheric pressure low temperature plasma are experimentally studied. It was demonstrated that the use of perforated flat electrodes covered with dielectric allows to use of pure argon to get glow RF discharge (α-region of discharge). The main regularities of nanoparticle synthesis process are common for helium and argon atmosphere. It is very probably that formation of nanoparticles occurs in the plasma generation region and formation of their agglomerates happens in the afterglow region.</abstract>
        </abstracts>
        <codes>
          <udk>537.523: 66.088</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>RF-DISCHARGE ATMOSPHERIC PRESSURE</keyword>
            <keyword>SILICON DIOXIDE NANOPARTICLES</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.22/</furl>
          <file>23_kretusheva.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>165-170</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Mazurin</surname>
              <initials>V.L.</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Polyurethane – structural material of xxi century</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In article consider questions of becoming polyutherane as structural material, its physical and chemical properties, also the main applications of polyurethane’s details.</abstract>
        </abstracts>
        <codes>
          <udk>678.6</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>POLYURETHANE</keyword>
            <keyword>APPLICATION</keyword>
            <keyword>PHYSICAL PROPERTIES</keyword>
            <keyword>PAINTS COATINGS</keyword>
            <keyword>CHEMICAL RESISTANCE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.23/</furl>
          <file>24_mazurin.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>171-176</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Lebedev</surname>
              <initials>Vladimir</initials>
              <email>vladimir_aleksandrovich_lebedev@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Sokolov</surname>
              <initials>Sergey</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The study skews of metal constructions of cranes overhead type</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article considers influence of process skewing metal construction crane on durability of its units, are given schemes and experimental results on the measurement of the values of skewing on the gantry crane with frequency control system, are made the calculations of skewing’s parameters for the experimental crane, are made a comparative analysis of the experimental data and the calculation results, by results of the comparative analysis are stated conclusions.</abstract>
        </abstracts>
        <codes>
          <udk>621.873.12</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>GANTRY CRANE</keyword>
            <keyword>DURABILITY</keyword>
            <keyword>SKEWING</keyword>
            <keyword>FORCE OF SKEWING</keyword>
            <keyword>STIFFNESS OF SKEWING</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.24/</furl>
          <file>25_lebedev.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>177-181</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Rusinov</surname>
              <initials>Rostislav</initials>
              <email>kgm-spb@list.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Elizov</surname>
              <initials>Alexander</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Dobretsov</surname>
              <initials>Roman</initials>
              <email>kgm-spb@list.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Internal combustion engines with increased expansion ratio of explosive mixture</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Examined an issue involving the work cycle parameters calculation of the internal combustion engine with increased expansion ratio. Suggested a calculation method in which the number of empirical coefficients was minimized. Suggested method admits a line analysis of different combinations of acting factors and their optimal ratio search.</abstract>
        </abstracts>
        <codes>
          <udk>629.1.032.001</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>DIESEL ENGINE</keyword>
            <keyword>WORK CYCLE</keyword>
            <keyword>FUEL EFFICIENCY</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.25/</furl>
          <file>26_rusinov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>182-187</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Akhmetshin</surname>
              <initials>Timur</initials>
              <email>akhmet-timur@yandex.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Nosov</surname>
              <initials>Victir</initials>
              <email>nosovvv@list.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Assessment of the strength of construction materials founded in the phase of homogeneous destruction</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article is devoted to the problem of determining a resource of technical objects, which boils down to finding the time remaining before their limiting state, non-destructive method for the analysis of acoustic emission (AE) from a position of micro-mechanical models of destruction and time parameters of AE.</abstract>
        </abstracts>
        <codes>
          <udk>620.199.001.18</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>NON-DESTRUCTIVE TESTING</keyword>
            <keyword>ACOUSTIC EMISSION</keyword>
            <keyword>HOMOGENEOUS DESTRUCTION</keyword>
            <keyword>RESOURCE,  MICROMECHANICAL MODEL</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.26/</furl>
          <file>27_akhmetshin.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>188-192</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <researcherid>https://publons.com/a/</researcherid>
              <scopusid>56426211200</scopusid>
              <orcid>https://orcid.org/</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <surname>Petrichenko</surname>
              <initials>Mikhail</initials>
              <email>fonpetrich@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The thermodynamic identity and equation nonisothermal filtration in porous medium isotropic</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Linear (gradient) filtration law Dupuis transformed for non-isothermal barotropic flow of a perfect gas. Integral characteristics of the filter (the coefficients of diffusion and filtration) are related to the intensity of heat transfer in the course of filtration. Isothermal filtration is obtained as a limiting case of isothermal filtration at a value of the polytropic index  n→1  ±0. We prove the non-linearity of the pressure distribution and passive impurities in the course of isothermal filtration.</abstract>
        </abstracts>
        <codes>
          <udk>531:532</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>FILTRATION</keyword>
            <keyword>FILTRATION COEFFICIENT</keyword>
            <keyword>PERMEABILITY COEFFICIENT OF THE POROUS MEDIUM,  BAROTROPIC</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.27/</furl>
          <file>28_petrychenko.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>193-196</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Girgidov</surname>
              <initials>Artur</initials>
              <email>hydravlika@cef.spbstu.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Remarks to the hydraulic centrifugal casting pipes</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The shapes of inner melt free surface while centrifugal tube casting are considered. The Froude number for centrifugal force field is introduced to predict the shapes of the free surface during a solidification. Stable coaxial cylindrical surface of melt for the case of thin wall tube is stated. It is shown that to the end of solidification the inner free surface has no excentricitet anyway.</abstract>
        </abstracts>
        <codes>
          <udk>621.74</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>TUBE CASTING</keyword>
            <keyword>CENTRIFUGAL FORCE</keyword>
            <keyword>MELT</keyword>
            <keyword>FROUDE NUMBER</keyword>
            <keyword>EXCENTRICITET</keyword>
            <keyword>SOLIDIFICATION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.28/</furl>
          <file>29_girgidov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>197-202</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Gryaznov</surname>
              <initials>Nikolay</initials>
              <email>gna@rtc.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Pantaleev</surname>
              <initials>Stefan</initials>
              <email>pantaleev@ltc.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Ivanov</surname>
              <initials>Andrey</initials>
              <email>a.ivanov@rtc.ru</email>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Kochkaryov</surname>
              <initials>Dmitry</initials>
              <email>kochdim83@mail.ru</email>
            </individInfo>
          </author>
          <author num="005">
            <individInfo lang="ENG">
              <surname>Kulikov</surname>
              <initials>Dmitry</initials>
              <email>ds.koolikov@rtc.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">High performance measurement reference objects in space to the hydraulic centrifugal casting pipes</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Analysis of existing approaches to laser location ensures revealing their main limitations. The suggested usage of prism scanning, signal coding, including the spectral one, and array detection of radiation provide increase of laser location performance.</abstract>
        </abstracts>
        <codes>
          <udk>681.784.3</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>LASER LOCATION</keyword>
            <keyword>PRISM SCANNING</keyword>
            <keyword>COORDINATE INFORMATION</keyword>
            <keyword>ARRAY DETECTOR</keyword>
            <keyword>SIGNAL CODING</keyword>
            <keyword>SPECTRAL CODING</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.29/</furl>
          <file>30_grjaznov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>203-210</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Tashevsky</surname>
              <initials>Arnold</initials>
              <email>taarnold@yandex.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Verification test results of complex technical systems</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In article are offered a numerical method of assessing the characteristics and parameters of the distribution of the observed evidences in a small number of tests to confirm the requirements of technical specifications for the quality of complex products engineering.</abstract>
        </abstracts>
        <codes>
          <udk>621.001.5:331.01</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>A PRIORI AND EXPERIMENTAL DATA</keyword>
            <keyword>THE LAW OF DISTRIBUTION</keyword>
            <keyword>RANDOM VARIABLE</keyword>
            <keyword>A SMALL  NUMBER OF TESTS</keyword>
            <keyword>THE REQUIREMENTS OF TECHNICAL SPECIFICATIONS</keyword>
            <keyword>QUALITY</keyword>
            <keyword>COMPLEX  PRODUCTS ENGINEERING</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.30/</furl>
          <file>31_tashevsky.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>211-215</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Kovalevsky</surname>
              <initials>Alexey</initials>
              <email>leha_mar@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Improvement technology consumable electrode welding</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article describes the designed device for the conversion of electrical oscillations into mechanical oscillations that allows organizing the forced transfer of electrode metal without short circuit in the arc space and metal splatter in the process of carbon dioxide welding. It is shown that using the converter during welding decreases the electrode metal loss coefficient by 40–50 % compared to welding without the converter.</abstract>
        </abstracts>
        <codes>
          <udk>621.791.754.4</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>FORCED TRANSFER</keyword>
            <keyword>AUTOMATIC</keyword>
            <keyword>SEMIAUTOMATIC CARBON DIOXIDE WELDING</keyword>
            <keyword>RESONANT  OSCILLATION FREQUENCY</keyword>
            <keyword>AMPLITUDE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.31/</furl>
          <file>32_kovalevsky.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>216-220</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Grigoriev</surname>
              <initials>Boris</initials>
              <email>Raskatov_@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Experimental study of freezing of sandy ground in equilibrium and disequilibrium conditions</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The paper describes the experimental system and results of the experimental studies of unfrozen water content in the soil at equilibrium and disequilibrium states in the system soil-water-ice. The approximation of the results is shown.</abstract>
        </abstracts>
        <codes>
          <udk>536:551.343.74</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>THE EXPERIMENTAL SYSTEM</keyword>
            <keyword>UNFROZEN WATER</keyword>
            <keyword>FROZEN GROUND</keyword>
            <keyword>NON-EQUILIBRIUM PROCESSES</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.32/</furl>
          <file>33_grigoriev.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>221-225</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Lukashevich</surname>
              <initials>A.A.</initials>
              <email>a.luk@bk.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Computational models of contact interaction and destruction of deformable bodies using the contact finite elements</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The numerical approach to contact interaction and destruction of elastic-deformable solids is offered. The interaction of crack edges, including friction and contact pressure, is modeled by frame contact finite elements using the step-by-step analysis.</abstract>
        </abstracts>
        <codes>
          <udk>539.3</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>CONTACT INTERACTION</keyword>
            <keyword>FRAGILE DESTRUCTION</keyword>
            <keyword>CRACK</keyword>
            <keyword>UNILATERAL CONSTRAINTS</keyword>
            <keyword>CULON’S  FRICTION</keyword>
            <keyword>STEP-BY-STEP ANALYSIS</keyword>
            <keyword>CONTACT ELEMENT</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.33/</furl>
          <file>34_lukashevich.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>226-230</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Zatsepina</surname>
              <initials>Marina</initials>
              <email>marichka_za@list.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Kirillovskii</surname>
              <initials>Vladimir</initials>
              <email>vkkir@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The modern quantitative shadow method based on the application of the computer technology</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">This article is dedicated to the development of a modern quantitative method of Fufo knife-edge, providing the control with wide opportunities. Computer processing of the data is carried out with a program that allows to restore the wave front, to measure the wave aberrations of the optical system and to determine the required characteristics given by the quality of the image. The using of a method of an izofotometry improves the accuracy of quantitative shadow method</abstract>
        </abstracts>
        <codes>
          <udk>535.317.2</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>OPTICAL INSPECTION METHODS</keyword>
            <keyword>THE SHADOW METHOD OF FUKO KNIFE-EDGE</keyword>
            <keyword>THE DEFORMATION  OF THE WAVEFRONT</keyword>
            <keyword>THE SENSITIVITY</keyword>
            <keyword>THE METHOD OF IZOFOTOMETRY</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.34/</furl>
          <file>35_zatsepina.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>231-237</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Grachev</surname>
              <initials>Denis</initials>
              <email>grachov@phys.unn.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Bobrov</surname>
              <initials>Alexander</initials>
              <email>bobrov@phys.unn.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Chugrov</surname>
              <initials>Ivan</initials>
              <email>chugrov@phys.unn.ru</email>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Ershov</surname>
              <initials>Alexey</initials>
              <email>ershov@phys.unn.ru</email>
            </individInfo>
          </author>
          <author num="005">
            <individInfo lang="ENG">
              <surname>Pavlov</surname>
              <initials>Dmitry</initials>
              <email>pavlov@unn.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Arrays of silicon nanocrystals in SiO[2] matrix: structure and luminescent properties</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The effect of high temperature (500–1100 °C) annealing of alfa-SiO[x]/SiO[2] multilayered nanoperiodic structures (MNS) formed by evaporation from two independent sources have been investigated. With results of analyzing the structure by high-resolution transmission electron microscopy it was concluded that during annealing at 1000–1100 °C in alfa-SiO[x]-layers of MNS vertically ordered arrays of silicon nanocrystals with a diameter not exceeding the initial thickness of alfa-SiO[x]-layers, with surface density ~ 10{12} cm{-2} are formed. The resulting structure with arrays of silicon nanocrystals in SiO[2] characterized size-depended photoluminescence at room temperature in 700–850 nm- wavelength range. </abstract>
        </abstracts>
        <codes>
          <udk>539.216.2:539.23:535.37</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>MULTILAYERED STRUCTURE</keyword>
            <keyword>ANNEALING</keyword>
            <keyword>SILICON NANOCRYSTAL</keyword>
            <keyword>ELECTRON MICROSCOPY</keyword>
            <keyword>PHOTOLUMINESCENCE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.35/</furl>
          <file>36_grachev.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>238-242</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Yarusova</surname>
              <initials>Olga</initials>
              <email>yarusovaso@gmail.com</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Modular elaboration of children furniture for preschool educational institutions</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the design of the project were given the following goals and objectives: reduce the area of the main premises for the normal development of the 12 children from 3 to 7 years, increase the number of places in pre-school educational institution. This project it is possible to apply in state pre-school educational institutions, private kindergartens, etc.</abstract>
        </abstracts>
        <codes>
          <udk>684.4.043</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>DESIGN</keyword>
            <keyword>FURNITURE</keyword>
            <keyword>DEVELOPMENT</keyword>
            <keyword>CHILDREN</keyword>
            <keyword>MODULAR SISTEM</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.36/</furl>
          <file>37_yarusova.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>243-247</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Galichina</surname>
              <initials>Alina</initials>
              <email>alinka.pirate@gmail.com</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Karseev</surname>
              <initials>Anton</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Davydov</surname>
              <initials>Vadim</initials>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Dudkin</surname>
              <initials>Valentin</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The use of fuel oil emulsion for the power installations on enterprises</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In clause problems of oil skins utilization are considered. These skins are formed after secondary oil separation. The new method of fuel oil emulsions preparation for their effective use in power installation fireboxes has been proposed. The new approach to effective measuring of the concentrations of water and oil in the binary mixture flowing stream has been found.</abstract>
        </abstracts>
        <codes>
          <udk>53.06:665.6/.7</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>OIL EMULSION</keyword>
            <keyword>FUEL OIL EMULSION</keyword>
            <keyword>SEPARATION</keyword>
            <keyword>NUCLEAR — MAGNETIC RELAXOMETER,  SPONTANEOUS RELAXATION TIME T1</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.37/</furl>
          <file>38_galichina.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>247-260</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Kulinkovich</surname>
              <initials>Alexey</initials>
              <email>geochem@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <authorCodes>
              <scopusid>56825574900</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Gumeniuk</surname>
              <initials>Vasiliy</initials>
              <email>kaf-uzchs@mail.ru</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The cooperative nature of generation perоxy compounds for radiolizis of the aqueous solutions uranils</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Relevance of creation of an express control method of compounds of uranium in natural waters is proved. Not local transfer of electrons at excitement of associates of water by broadband electromagnetic radiation and influence radioliz on generation of active forms of oxygen in water solutions of metals of variable valency is investigated. The conclusion is drawn on cooperative nature of generation a radical ion that the ion-crystal associates of water and their phase transformation accompanied by formation of free radicals contacts electromagnetic excitement.</abstract>
        </abstracts>
        <codes>
          <udk>543.426:539.16.04:556.53</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>HEMILYUMINESTSENTNY EXPRESS CONTROL</keyword>
            <keyword>GENERATION OF ACTIVE FORMS OF OXYGEN</keyword>
            <keyword>COMPOUNDS OF URANIUM</keyword>
            <keyword>BROADBAND ELECTROMAGNETIC RADIATION</keyword>
            <keyword>RADIOLIZIS WATERS</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.38/</furl>
          <file>39_kulinkovich.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>261-267</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Kulinkovich</surname>
              <initials>Juliya</initials>
              <email>geochem@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Gumenyuk</surname>
              <initials>Oksana</initials>
              <email>geochem@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Factors and mechanisms of mass panic in emergencies</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Questions of behavior of the person in the conditions of emergency situations and influence of an individual panic on surrounding (crowd) are considered. Factors of emergence of a mass panic and mechanisms of its development are allocated. Measures for prevention and receptions of elimination of a panic in emergency situations are under construction taking into account the specified factors and mechanisms.</abstract>
        </abstracts>
        <codes>
          <udk>543.426:539.16.04:556.53</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>FEAR</keyword>
            <keyword>PANIC</keyword>
            <keyword>PANIC CROWD</keyword>
            <keyword>MASS PANIC</keyword>
            <keyword>PANIC FACTORS</keyword>
            <keyword>MECHANISMS OF A MASS PANIC</keyword>
            <keyword>SCHEDULED  MAINTENANCE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.39/</furl>
          <file>40_kulinkovich.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>268-276</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Dobrovolsky</surname>
              <initials>Valeriy</initials>
              <email>polit_ec@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Dubarenko</surname>
              <initials>Konstantin</initials>
              <email>bsts@fkb.spbstu.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Problems security and protection in emergency situations of economic facilities</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG"/>
        </abstracts>
        <codes>
          <udk>217.21.36</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword/>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.40/</furl>
          <file>41_dobrovolsky.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>277-280</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Shkalikov</surname>
              <initials>Victor</initials>
              <email>shkalikov.v@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Byshevskaya</surname>
              <initials>Anastasiya</initials>
              <email>nastya_slastya@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">A.V.  Effects of watercourses on the condition of motor road (illustrated Smolensk region)</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The results of the survey culverts on roads Smolensk region. Revealed changes in the state of roads in areas of the device structures of insufficient taking into account peculiarities of the hydrological regime of small streams, may cause erosion, waterlogging and other negative processes. Are examples of the most common emergency situations on the roads, arising from errors in the design of culverts, poor quality of construction, elimination of late emerging adverse changes in their condition.</abstract>
        </abstracts>
        <codes>
          <udk>628</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>ROADS</keyword>
            <keyword>WATER BODIES</keyword>
            <keyword>SMALL STREAMS</keyword>
            <keyword>HYDROLOGY</keyword>
            <keyword>CULVERTS</keyword>
            <keyword>NEGATIVE CONSEQUENCES;  EMERGENCIES</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.41/</furl>
          <file>42_shkalikov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>281-288</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <scopusid>56825574900</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Gumeniuk</surname>
              <initials>Vasiliy</initials>
              <email>kaf-uzchs@mail.ru</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Karmishin</surname>
              <initials>Alexander</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Kireev</surname>
              <initials>Vladimir</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">About quantitative indicator of danger man-made accidents</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Problems of substantiation of total and integral spatial-temporal hazard indices of anthropogenic emergencies as well as general integral representations for their evaluation are considered. Practically important tasks which have to be solved with the use of theoretically justified indices are defined.</abstract>
        </abstracts>
        <codes>
          <udk>614.8:627.8</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>ANTHROPOGENIC EMERGENCY</keyword>
            <keyword>POPULATION</keyword>
            <keyword>STAFF</keyword>
            <keyword>GENERALIZED FACTORIAL-TEMPORAL EXPOSURE LAW</keyword>
            <keyword>EXTENT OF EXPOSURE</keyword>
            <keyword>SPATIAL-TEMPORAL HAZARD INDICES</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.42/</furl>
          <file>43_gumenjuk.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>289-299</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Tumanov</surname>
              <initials>Alexander</initials>
              <email>toumanov@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Development of a system to support a decision to assess the risk of accidents on potentially hazardous installations</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The task of preventing and predicting adverse events (accidents, incidents, accidents, catastrophes) problem in the application of automation, a method of forming a model of managerial decision-support system to assess the risk of accidents, based on the structuring and evaluation of internal information flows, risk classification, their probability and potential consequences of potentially hazardous installations.</abstract>
        </abstracts>
        <codes>
          <udk>614:627.8</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>DECISION SUPPORT SYSTEM</keyword>
            <keyword>A DANGEROUS ENERGY OBJECT</keyword>
            <keyword>DATABASE</keyword>
            <keyword>EXPERT SYSTEM</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.43/</furl>
          <file>44_tumanov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>300-308</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Rechinskii</surname>
              <initials>Alexander</initials>
              <email>alexander.rechinsky@spbstu.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Nikiforov</surname>
              <initials>Valerii</initials>
              <email>valerii.nikiforov@gmail.com</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Chernenkaya</surname>
              <initials>Liudmila</initials>
              <email>Ludmila@qmd.spbstu.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The development of educational standards, Saint-Petersburg state polytechnic university as the implementation of the program of development of Russian Education for the years 2013-2020</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Directions of evolution of High professional education in Russia and tasks for Saint-Petersburg State Polytechnic University are considered. Basis and results of development of self-design educational standards at StPbSPU are introduced.</abstract>
        </abstracts>
        <codes>
          <udk>378.416</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>EDUCATION</keyword>
            <keyword>BACHELOR’S STUDIES</keyword>
            <keyword>EDICATIONAL STANDARD OF StPbSPU</keyword>
            <keyword>PEDAGOGICAL DACKGROUND OF STANDARD</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.44/</furl>
          <file>45_rechinskii.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>309-315</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Akopova</surname>
              <initials>Mariya</initials>
              <email>lingua@mail.spbstu.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Popova</surname>
              <initials>Nina</initials>
              <email>ninavaspo@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Innovational aspects of foreign language teaching content in modern university (project IELTS)</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Important role of the Institute of Applied Linguistics (IAL) formed in St.Petersburg State Polytechnical University (SPSPU) in changing and deepening the contents of modern foreign language teaching is considered. Possibilities of bachelor training for international IELTS examination are analyzed. The foreign language workload is proposed to be increased and distributed in three disciplines realized as Federal, institutional and elective curriculum components. </abstract>
        </abstracts>
        <codes>
          <udk>372.881.111.1</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>FOREIGN LANGUAGE</keyword>
            <keyword>BACHELOR CURRICULUM</keyword>
            <keyword>APPLIED LINGUISTICS</keyword>
            <keyword>INTERNATIONAL EXAMINATION IELTS</keyword>
            <keyword>SYLLABUS</keyword>
            <keyword>DISCIPLINE VOLUME DISTRIBUTION</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.45/</furl>
          <file>46_akopova.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>316-321</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Boronin</surname>
              <initials>Vitaliy</initials>
              <email>tee.dep@eef.spbstu.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <authorCodes>
              <scopusid>7102545375</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Kirillov</surname>
              <initials>Alexander</initials>
              <email>ai_kirillov@mail.ru, tot@pef.spbstu.ru</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
          <author num="003">
            <authorCodes>
              <researcherid>B-7916-2013</researcherid>
              <scopusid>6601971248</scopusid>
              <orcid>0000-0002-1173-8727</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, Russia</orgName>
              <surname>Korovkin</surname>
              <initials>Nikolay</initials>
              <email>nikolay.korovkin@gmail.com</email>
              <address>Russia, 195251, St.Petersburg, Polytechnicheskaya, 29</address>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Sapozhnikov</surname>
              <initials>Sergey</initials>
              <email>tfhe1@pef.spbstu.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">The content of the fundamental engineering education at the institute of energy and transport systems SPbSPU</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article considers the special role and specificity of education in the departments of Theory of Electrical Engineering and Institute of Theoretical Foundations of Thermal Energy and transport systems STU. Notes the need to preserve the deep physical and mathematical foundations in the training of engineers and scientists.</abstract>
        </abstracts>
        <codes>
          <udk>378.1</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>THEORY OF ELECTRICAL ENGINEERING</keyword>
            <keyword>THE THEORETICAL BASIS OF HEAT ENGINEERING</keyword>
            <keyword>BASIC  ENGINEERING DISCIPLINE</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.46/</furl>
          <file>47_boronin.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>322-331</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Amosov</surname>
              <initials>Vladimir</initials>
              <email>amosovvlvl@yahoo.com</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Vishnevskaya</surname>
              <initials>Tatyana</initials>
              <email>vish@ics2.ecd.spbstu.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <surname>Molodyakov</surname>
              <initials>Sergey</initials>
              <email>sm50@yandex.ru</email>
            </individInfo>
          </author>
          <author num="004">
            <individInfo lang="ENG">
              <surname>Ustinov</surname>
              <initials>Sergey</initials>
              <email>usm50@yandex.ru</email>
            </individInfo>
          </author>
          <author num="005">
            <individInfo lang="ENG">
              <surname>Chernorutsky</surname>
              <initials>Igor</initials>
              <email>igcher@robotek.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">New technologies of computer science in the curriculum department of information and control systems SPbSPU</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The problem of the study of modern computing technology at the University at special software profile considered. Using several disciplines shows how to build lab work related to the study of programmable logic, and digital signal processors.</abstract>
        </abstracts>
        <codes>
          <udk>378.416</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>CURRICULUM</keyword>
            <keyword>COURSE</keyword>
            <keyword>COMPUTER TECHNOLOGY</keyword>
            <keyword>LEVELS OF DESIGN</keyword>
            <keyword>HARDWARE DESCRIPTION  LANGUAGES</keyword>
            <keyword>LEVEL EDITORS OF DESIGN</keyword>
            <keyword>TESTING</keyword>
            <keyword>SIMULATION</keyword>
            <keyword>CO-SIMULATION</keyword>
            <keyword>THE JOINT  DEVELOPMENT</keyword>
            <keyword>CHIP PROGRAMMABLE LOGIC</keyword>
            <keyword>DIGITAL SIGNAL PROCESSOR</keyword>
            <keyword>THE DEVELOPMENT  ENVIRONMEN</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.47/</furl>
          <file>48_amosov.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>332-335</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Porshneva</surname>
              <initials>Elena</initials>
              <email>a_porshneva@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Tumanov</surname>
              <initials>Alexander</initials>
              <email>toumanov@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">A method for the analysis of physics aptitude test results for students admission to the military training department of Saint-Petersburg state polytechnic university</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article describes a method for the analysis of Physics aptitude test results for students admission to the military training department.</abstract>
        </abstracts>
        <codes>
          <udk>378</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>TESTING</keyword>
            <keyword>MILITARY TRAINING DIVISION</keyword>
            <keyword>METHOD</keyword>
            <keyword>WEIGHT FACTORS</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engtech.spbstu.ru/article/2013.83.48/</furl>
          <file>49_porshneva.pdf</file>
        </files>
      </article>
    </articles>
  </issue>
</journal>
