<?xml version="1.0" encoding="utf-8"?>
<journal>
  <titleid>75504</titleid>
  <issn>2712-8172</issn>
  <journalInfo lang="ENG">
    <title>Magazine of Civil Engineering</title>
  </journalInfo>
  <issue>
    <number>3</number>
    <altNumber>13</altNumber>
    <dateUni>2010</dateUni>
    <pages>1-64</pages>
    <articles>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>4-10</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Goshka</surname>
              <initials>Leonid</initials>
              <email>tookola@mail.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">About the limits of responsibilities in the field of climatic systems design</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The author analyses responsibility of building systems designer in the view of air influence on the human health. Processes in the organism are modelled when carbonic gas content in the room increases. The model and experimental data are compared. </abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.9</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>climatic systems</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.1/</furl>
          <file>goshka_chapter11.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>11-14</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>LLC ID Engineering</orgName>
              <surname>Nedviga</surname>
              <initials>Pavel</initials>
              <email>pavel.nedviga@gmail.com</email>
              <address>St. Petersburg, Russian Federation</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Use of heat storages and low-grade heat of earth for heating in private houses</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the article various solutions for indirect heating of private houses are considered. The end-to-end solution is proposed with using of soil energy and heat storages.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.8</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>heat storages</keyword>
            <keyword>low-grade heat of earth</keyword>
            <keyword>heating in private houses</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.2/</furl>
          <file>nedviga_geotherm.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>15-17</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Cherepovets State University</orgName>
              <surname>Malysheva</surname>
              <initials>Anna</initials>
              <email>malyshka-1003@mail.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Cherepovets State University</orgName>
              <surname>Chernyavskaya</surname>
              <initials>Ya.</initials>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <orgName>Cherepovets State University</orgName>
              <surname>Popov</surname>
              <initials>V.</initials>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Optimization of thermal and hydraulic pipeline protection</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article is dedicated to the problem of pipeline insulation. Existing solutions are analysed and modernization of silicate enamel pipeline covering is proposed. Suggested technology of oxyfuel gas spraying allows to increase productivity and  reduce expenses for covering.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.7</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>pipeline protection</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.3/</furl>
          <file>malysheva_truboprovody.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>19-22</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Science and technology center "Gektor"</orgName>
              <surname>Ivianskiy</surname>
              <initials>Aleksandr</initials>
              <email>support@smeta.biz</email>
              <address>НТЦ «Гектор»</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>"North-Vestern low agency" Ltd</orgName>
              <surname>Shutrov</surname>
              <initials>Sergey</initials>
              <email>shutrov@szapi.ru</email>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Automatized development of design estimates using estimate bases 2001</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the article various estimate bases are analysed in historic prospect. Classification of software for estimation and criteria for its selection are given.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.11</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>design estimates</keyword>
            <keyword>automatized development</keyword>
            <keyword>estimate bases</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.4/</furl>
          <file>shutrov_smety.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>24-26</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <scopusid>57194623014</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>South Ural State University</orgName>
              <surname>Baiburin</surname>
              <initials>Albert</initials>
              <email>abayburin@mail.ru</email>
              <address>76, Lenin prospekt, Chelyabinsk, Russia, 454080</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">About the development of self-regulated organization standards for evaluation of quality control system in construction</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The quality control system in construction in self-regulation is considered. Control functions distribution between the project participants is analysed. The author suggest a standard project "Evaluation of quality control system in construction" for application in self-regulated organizations".</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.10</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>self-regulated organization</keyword>
            <keyword>quality control system</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.5/</furl>
          <file>baiburin_SRO.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>27-31</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Sokolov</surname>
              <initials>Vladimir</initials>
              <email>sva0808@rambler.ru</email>
              <address>29 Politechnicheskaya St., St. Petersburg, 195251, Russia</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Importance of diagnostic characters and diagnostic value of technical inspection for estimation of building structures elements state</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">When building structures technical inspection is done, the expertise is usually used, i.e. the expert make a decision about technical state group on the base of certain diagnostic characters and his professional experience. In the article the author tries to make a technical state estimation process more strict. For that he classifies diagnostic characters, and on the base of this classification he develops a diagnostic matrix including diagnostic importance of each diagnostic character.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.12</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>technical inspection of building structures</keyword>
            <keyword>diagnostic characters</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.6/</furl>
          <file>sokolov_diagnostika.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>32-34</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University, PRDI “Venchur”</orgName>
              <surname>Ulybin</surname>
              <initials>Alexey</initials>
              <email>ulybin@mail.ru</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Kukushkina</surname>
              <initials>G.</initials>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Use features of resistive electrocontact method for control of steel structures deflected mode</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the article rather new resistive electrocontact method for building structures inspection is investigated. The influence of ambient temperature, steel grade, specimen thickness and sensor pressing force on the measurements is analysed.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.13</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>electrocontact method for control</keyword>
            <keyword>deflected mode</keyword>
            <keyword>steel structures</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.7/</furl>
          <file>ulybin_NDS.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>35-38</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Kuznetcov</surname>
              <initials>Viktor</initials>
              <address>29 Politechnicheskaya St., St. Petersburg, 195251, Russia</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Morozova</surname>
              <initials>Tatyana</initials>
              <email>mtatiana-2101@mail.ru</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">External reinforcement of reinforced concrete column by composite coal-plastic material</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Coal-plastic behavior is considered with relation to concrete structures strengthening. Four finite elements models for different strengthening types of cast concrete columns are given. The optimal reinforcement scheme for short columns is discovered. Dependences of displacements on loading are received.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.4</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>reinforced concrete column</keyword>
            <keyword>external reinforcement</keyword>
            <keyword>composite coal-plastic material</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.8/</furl>
          <file>morozova_uglevolokno.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>39-42</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <scopusid>15730895100</scopusid>
              <orcid>http://orcid.org/0000-0003-3251-3356</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Saint Petersburg State University of Industrial Technologies and Design</orgName>
              <surname>Gorshkov</surname>
              <initials>Alexander</initials>
              <email>alsgor@yandex.ru</email>
              <address>St. Petersburg, Russia</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Gladkikh</surname>
              <initials>Alina</initials>
              <email>AlinaGladkikh@yandex.ru</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Influence of mortar joints in aerocrete-work on the thermotechnical homogeneity of walls </artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the paper the influence of work joints on the thermotechnical homogeneity of walling is estimated. Now heat resistance of walling is often calculated from main wall material parameters. Heat-conducting inclusions like mortar joints are not taken into account.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.5</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>mortar joints</keyword>
            <keyword>thermotechnical homogeneity</keyword>
            <keyword>aerocrete-work</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.9/</furl>
          <file>gladkih_shvy.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>43-47</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <scopusid>56091980300</scopusid>
              <orcid>0000-0003-3850-424X</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Lalin</surname>
              <initials>Vladimir</initials>
              <email>vllalin@yandex.ru</email>
              <address>29 Politechnicheskaya St., St. Petersburg, 195251, Russia</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Yavarov</surname>
              <initials>Aleksandr</initials>
              <email>86_javrik@mail.ru</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Modern calculation methods of trunk pipelines, SOFiSTiK</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the article the finite elements modelling and calculation of system "pipeline-piles-foundation bed" for above-ground laying and beam pass. Thermal loadings on the pipeline in permafrost are taken into account. Simulation is made by software SOFiSTiK.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.6</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>pipeline-piles-foundation bed</keyword>
            <keyword>trunk pipelines</keyword>
            <keyword>calculation methods</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.10/</furl>
          <file>yavarov_sofistik.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>48-51</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Penza State University of Architecture and Construction</orgName>
              <surname>Moroz</surname>
              <initials>M.</initials>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Penza State University of Architecture and Construction</orgName>
              <surname>Kalashnikov</surname>
              <initials>V.</initials>
              <email>mn.moroz80@gmail.com</email>
            </individInfo>
          </author>
          <author num="003">
            <authorCodes>
              <scopusid>7004757888</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Penza State University of Architecture and Construction</orgName>
              <surname>Tarakanov</surname>
              <initials>Oleg</initials>
              <email>zigk@pguas.ru</email>
              <address>28, Germana Titova str, Penza, Russia, 440028</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Effective integral powder waterproofer "PRIM-1" for composite materials on basis of mazut and burnt lime reaction products</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article is dedicated to the new integral waterproofer for concrete on basis of mazut. Chemical reactions between waterproofer components are analised. Results of tests for modified concrete for strength, axial compression, water absorption kinetics are given.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.14</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>integral powder waterproofer</keyword>
            <keyword>PRIM-1</keyword>
            <keyword>composite materials</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.11/</furl>
          <file>kalashnikov_dobavka.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>52-55</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Kuznetcov</surname>
              <initials>Viktor</initials>
              <address>29 Politechnicheskaya St., St. Petersburg, 195251, Russia</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Pogrebnoy</surname>
              <initials>Igor</initials>
              <email>i.pogrebnoy@gmail.com</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Non-nogging prestressed building frame with flat-slab deck</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">In the article the building technology using prestressed reinforced concrete is analysed. Principal design models of non-nogging building frames with prestressed reinforcement were created. Dependences between covering thickness, concrete and reinforcement consumption and bay size withprestressed reinforcement or witout it.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.3</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>non-nogging building frame</keyword>
            <keyword>prestressed building frame</keyword>
            <keyword>flat-slab deck</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.12/</furl>
          <file>pogrebnoy_prednapryazheniye.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>56-60</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Arutunyan</surname>
              <initials>Anna</initials>
              <email>a_arutunyan@mail.ru</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Modern methods of buildings seismic isolation</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The article is an analytic review of various methods for seismic insulation. Classification of seismic insulation systems is given. The main design solutions are examined, their advantages and disadvantages are given. </abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.1</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>seismic isolation</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.13/</furl>
          <file>arutyunyan_seismoisolation.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>61-64</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Lyadskiy</surname>
              <initials>Vasiliy</initials>
              <email>Vasily598@mail.ru</email>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Kuznetcov</surname>
              <initials>Viktor</initials>
              <address>29 Politechnicheskaya St., St. Petersburg, 195251, Russia</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Seismic fluoroplastic insulation for public buildings</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The seismic insulation system using fluoroplastic film is proposed. The structure is created on the base of combination of rubber-metal bearings and dampers. The structural layout is given, structural behavior is considered for the case of earthquake. Finite elemnts model of building is created and calculation for progressive fracture is conducted.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/MCE.13.2</doi>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>seismic insulation</keyword>
            <keyword>fluoroplastic</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://engstroy.spbstu.ru/article/2010.13.14/</furl>
          <file>lyadskiy_seismika.pdf</file>
        </files>
      </article>
    </articles>
  </issue>
</journal>
