<?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>5</number>
    <altNumber>80</altNumber>
    <dateUni>2019</dateUni>
    <pages>1-21</pages>
    <articles>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>7-13</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Rozhina</surname>
              <initials>Maria</initials>
              <email>masharozhina@mail.ru</email>
              <address>Saint Petersburg, Russia</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Povarenko</surname>
              <initials>Daria</initials>
              <email>Dashalodgp@icloud.com</email>
              <address>St. Petersburg, Russia</address>
            </individInfo>
          </author>
          <author num="003">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Lyubomirskiy</surname>
              <initials>Arseniy</initials>
              <email>tsap.vasia@yandex.ru</email>
              <address>St. Petersburg, Russia</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Сeramic granite as a material for suspended ventilated facades</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Russian market has a variety of materials of suspended ventilated facades, which are heavily used in modern building. It is important to understand which exactly is the most cost effective and durable. There are an analysis and comparison of basic facade materials and also a determination of the most optimal one. The analysis shows ceramic&#13;
granite has most of advantages. There are toughness, transverse and absorption of water tests in order to proof physical characteristics of this material. The results show that ceramic granite has high parameters and actually demonstrate that it is one of the best facade materials. Also it has medium price, good durability and a variety of colors.&#13;
These characteristics are very significant during the selection of a facade material for a new building. </abstract>
        </abstracts>
        <codes>
          <doi>10.18720/CUBS.80.1</doi>
          <udk>69</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>suspended ventilated facades</keyword>
            <keyword>facade materials</keyword>
            <keyword>toughness tests</keyword>
            <keyword>ceramic granite tiles</keyword>
            <keyword>transverse tests</keyword>
            <keyword>durability</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://unistroy.spbstu.ru/article/2019.80.1/</furl>
          <file>80_1.pdf</file>
        </files>
      </article>
      <article>
        <artType>RAR</artType>
        <langPubl>RUS</langPubl>
        <pages>14-21</pages>
        <authors>
          <author num="001">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Popova</surname>
              <initials>Ekaterina</initials>
              <email>katerina.popova995@gmail.com</email>
              <address>St. Petersburg, Russia</address>
            </individInfo>
          </author>
          <author num="002">
            <individInfo lang="ENG">
              <orgName>Peter the Great St. Petersburg Polytechnic University</orgName>
              <surname>Shegay</surname>
              <initials>Roman</initials>
              <email>Shegaj.ra@edu.spbstu.ru</email>
              <address>St. Petersburg, Russia</address>
            </individInfo>
          </author>
        </authors>
        <artTitles>
          <artTitle lang="ENG">Implementation of the «Form-Finding» method in the Rhinoceros software package</artTitle>
        </artTitles>
        <abstracts>
          <abstract lang="ENG">Today, methods for obtaining optimal shape, also known as "form-finding", are becoming more and more popular. These methods are used in dynamically developing сomputational complexes. However, the problem of creating an algorithm for obtaining the optimal shape of the structure has not yet been covered in scientific papers. The article describes the methods and principles of form-finding. The program code for solving the problem of finding the optimal shape of the shell was developed in the software complex Rhino. Conclusion about the advantages of using this algorithm to create preliminary architectural solutions was made at the end of the article.</abstract>
        </abstracts>
        <codes>
          <doi>10.18720/CUBS.80.2</doi>
          <udk>69</udk>
        </codes>
        <keywords>
          <kwdGroup lang="ENG">
            <keyword>form-finding</keyword>
            <keyword>generative design</keyword>
            <keyword>algorithmic design</keyword>
            <keyword>parametric modeling</keyword>
            <keyword>optimal shape</keyword>
            <keyword>method of dynamic relaxation</keyword>
          </kwdGroup>
        </keywords>
        <files>
          <furl>https://unistroy.spbstu.ru/article/2019.80.2/</furl>
          <file>80_2.pdf</file>
        </files>
      </article>
    </articles>
  </issue>
</journal>
