<?xml version="1.0" encoding="utf-8"?>
<journal>
  <titleid>33407</titleid>
  <issn>2304-6295</issn>
  <journalInfo lang="ENG">
    <title>Construction of Unique Buildings and Structures</title>
  </journalInfo>
  <issue>
    <number>12</number>
    <altNumber>75</altNumber>
    <dateUni>2018</dateUni>
    <pages>1-40</pages>
    <articles>
      <article>
        <artType>UNK</artType>
        <langPubl>RUS</langPubl>
        <pages>7-60</pages>
        <authors>
          <author num="001">
            <authorCodes>
              <researcherid>E-6426-2019</researcherid>
              <scopusid>56434340300</scopusid>
              <orcid>0000-0002-5694-1737</orcid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University, St. Petersburg, Russian Federation</orgName>
              <surname>Usanova</surname>
              <initials>Kseniia Iurevna</initials>
              <email>plml@mail.ru</email>
              <address>St. Petersburg, Russian Federation</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great Saint Petersburg Polytechnic University</orgName>
              <surname>Iakovlev </surname>
              <initials>Nikita</initials>
              <address>Polytechnicheskay, 29</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">BIM end-to-end training in university undergraduate program</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">The aim of the study is to create a comprehensive technology for learning BIM with the acquisition of basic skills in the first years of study at the university. The main global trends in learning BIM were analyzed. The modeling objects for the BIM course for the second-year students, the content of the project (text and graphic part) and method for current and final assessing were chosen. The technology and learning platform have been defined. The approbation of the idea was successfully carried out by students of the Engineering and Construction Institute of Peter the Great St. Petersburg Polytechnic University. An example of a coursework for the «Computer graphics» discipline, made by a second-year student pursuing a degree in Civil Engineering Institute at Peter the Great St. Petersburg Polytechnic University in the fall semester of 2018, is presented in the end of this article.</abstract>
        </abstracts>
        <codes>
          <doi>doi: 10.18720/CUBS.75.1</doi>
          <udk>69</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>Revit; 3d modeling; BIM; VDC; design; parametric modeling; buildings; construction; energy efficiency; structures;keywords</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://unistroy.spbstu.ru/article/2018.75.1/</furl>
          <file>75_1(1).pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>14-24</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <surname>Sidorenko</surname>
              <initials>Gennadiy</initials>
              <email>sidorenko@cef.spbstu.ru</email>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <surname>Togo</surname>
              <initials>Issa</initials>
              <email>issatogo@mail.ru</email>
            </individInfo>
          </author>
          <author num="003">
            <authorCodes>
              <scopusid>7004720340</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Mikhalev</surname>
              <initials>Mikhail Andreevich</initials>
              <address>St. Petersburg, Russian Federation</address>
            </individInfo>
          </author>
          <author num="004">
            <authorCodes>
              <scopusid>57212197933</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Izmailov</surname>
              <initials>Rudolf Aleksandrovich</initials>
              <address>St. Petersburg, Russian Federation</address>
            </individInfo>
          </author>
          <author num="005">
            <authorCodes>
              <scopusid>57224247976</scopusid>
            </authorCodes>
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Boronin</surname>
              <initials>Vitalii Nikolaevich</initials>
              <address>St. Petersburg, Russian Federation</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Modeling of filtration flows under hydraulic engineering structures</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">So far, in the design and operation of drainage systems insufficient attention has been paid to the stage of operations during the possible water volume changes. We are offering mathematical modeling methods for more accurate selection of parameters of multiple nature-technology systems, a significant increase in project quality and avenues to developing new technological solutions. We present models, algorithms and programs for numerical modeling of filtration flows under hydraulic facilities. Such tasks should be solved while designing and optimization of parameters of hydraulic facilities. Numerical algorithms are based on the finite element method. The results of computational experiments confirmed the high accuracy of numerical algorithm.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/CUBS.75.12</doi>
          <udk>69</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>Modelin</keyword>
            <keyword>filtration flows</keyword>
            <keyword>hydraulic structures</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://unistroy.spbstu.ru/article/2018.75.2/</furl>
          <file>7512.pdf</file>
        </files>
      </article>
    </articles>
  </issue>
</journal>
