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 <front>
  <journal-meta>
   <journal-id journal-id-type="publisher-id">Modeling of systems and processes</journal-id>
   <journal-title-group>
    <journal-title xml:lang="en">Modeling of systems and processes</journal-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Моделирование систем и процессов</trans-title>
    </trans-title-group>
   </journal-title-group>
   <issn publication-format="print">2219-0767</issn>
  </journal-meta>
  <article-meta>
   <article-id pub-id-type="publisher-id">72521</article-id>
   <article-id pub-id-type="doi">10.12737/2219-0767-2023-16-4-81-88</article-id>
   <article-categories>
    <subj-group subj-group-type="toc-heading" xml:lang="ru">
     <subject>Технические науки</subject>
    </subj-group>
    <subj-group subj-group-type="toc-heading" xml:lang="en">
     <subject></subject>
    </subj-group>
    <subj-group>
     <subject>Технические науки</subject>
    </subj-group>
   </article-categories>
   <title-group>
    <article-title xml:lang="en">Mathematical modeling of flow distribution of the perturbed state of a thermal power system</article-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Математическое моделирование потокораспределения возмущенного состояния теплоэнергетической системы</trans-title>
    </trans-title-group>
   </title-group>
   <contrib-group content-type="authors">
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Сазонова</surname>
       <given-names>Светлана Анатольевна</given-names>
      </name>
      <name xml:lang="en">
       <surname>Sazonova</surname>
       <given-names>Svetlana Anatol'evna</given-names>
      </name>
     </name-alternatives>
    </contrib>
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Кочегаров</surname>
       <given-names>Алексей Викторович</given-names>
      </name>
      <name xml:lang="en">
       <surname>Kochegarov</surname>
       <given-names>A. V.</given-names>
      </name>
     </name-alternatives>
     <email>kochiegharov77@mail.ru</email>
     <xref ref-type="aff" rid="aff-1"/>
    </contrib>
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Логачев</surname>
       <given-names>Данила Валерьевич</given-names>
      </name>
      <name xml:lang="en">
       <surname>Logachev</surname>
       <given-names>Danila Valer'evich</given-names>
      </name>
     </name-alternatives>
     <xref ref-type="aff" rid="aff-1"/>
    </contrib>
   </contrib-group>
   <aff-alternatives id="aff-1">
    <aff>
     <institution xml:lang="ru">Воронежский государственный технический университет</institution>
    </aff>
    <aff>
     <institution xml:lang="en">Voronezh State Technical University</institution>
    </aff>
   </aff-alternatives>
   <pub-date publication-format="print" date-type="pub" iso-8601-date="2023-12-20T20:39:58+03:00">
    <day>20</day>
    <month>12</month>
    <year>2023</year>
   </pub-date>
   <pub-date publication-format="electronic" date-type="pub" iso-8601-date="2023-12-20T20:39:58+03:00">
    <day>20</day>
    <month>12</month>
    <year>2023</year>
   </pub-date>
   <volume>16</volume>
   <issue>4</issue>
   <fpage>81</fpage>
   <lpage>88</lpage>
   <history>
    <date date-type="received" iso-8601-date="2023-12-18T00:00:00+03:00">
     <day>18</day>
     <month>12</month>
     <year>2023</year>
    </date>
   </history>
   <self-uri xlink:href="https://zh-szf.ru/en/nauka/article/72521/view">https://zh-szf.ru/en/nauka/article/72521/view</self-uri>
   <abstract xml:lang="ru">
    <p>Приведены результаты разработки модели анализа возмущенного состояния теплоэнергетической гидравлической системы на примере системы теплоснабжения. Выполнена оценка параметров режима функционирования теплоэнергетической гидравлической системы после воздействия на нее возмущающих факторов. Показано, что классификация стационарных состояний исследуемого фрагмента системы при установившемся потокораспределении ориентируема на граничные условия. Рассмотрены классифицируемые на четыре вида граничные условия. Отмечено, что выбор граничных условий необходимо выполнять с учетом применения энергетического эквивалентирования при анализе возмущенного состояния исследуемого фрагмента гидравлической системы. Приведена разработанная модель установившегося потокораспределения с неизотермическим течением вязкой среды. Сделаны выводы, что разработанная математическая модель представляет собой качественно новый подход к формализации задач анализа потокораспределения в системах с регулируемыми параметрами. Модель можно рассматривать как обобщенную форму представления частных моделей потокораспределения при описании исследуемого объекта, который можно рассматривать как гидравлическую цепь с регулируемыми параметрами при неизотермическом течении вязкой среды. Показано, что данная модель может быть использована для анализа и описания потоков и свойств вязкой среды в таких системах, где есть возможность регулирования параметров, и учитывается неизотермическое течение.</p>
   </abstract>
   <trans-abstract xml:lang="en">
    <p>The results of the development of a model for the analysis of the disturbed state of a thermal power hydraulic system on the example of a heat supply system are presented. The parameters of the operating mode of the thermal power hydraulic system after the influence of disturbing factors on it were evaluated. It is shown that the classification of stationary states of the studied fragment of the system with steady flow distribution is oriented to boundary conditions. The boundary conditions classified into four types are considered. It is noted that the choice of boundary conditions must be carried out taking into account the use of energy equivalence in the analysis of the perturbed state of the studied fragment of the hydraulic system. The developed model of steady-state flow distribution with a non-isothermal flow of a viscous medium is presented. It is concluded that the developed mathematical model represents a qualitatively new approach to formalizing the problems of flow distribution analysis in systems with adjustable parameters. The model can be considered as a generalized form of representation of particular flow distribution models when describing the object under study, which can be considered as a hydraulic circuit with adjustable parameters with a non-isothermal flow of a viscous medium. It is shown that this model can be used to analyze and describe the flows and properties of a viscous medium in such systems where it is possible to regulate the parameters, and non-isothermal flow is taken into account.</p>
   </trans-abstract>
   <kwd-group xml:lang="ru">
    <kwd>Математическое моделирование</kwd>
    <kwd>процессы формирования граничных условий</kwd>
    <kwd>теплоэнергетическая гидравлическая система</kwd>
    <kwd>возмущенное состояние системы</kwd>
    <kwd>анализ потокораспределения</kwd>
    <kwd>энергетическое эквивалентирование</kwd>
    <kwd>вариационный принцип.</kwd>
   </kwd-group>
   <kwd-group xml:lang="en">
    <kwd>Mathematical modeling</kwd>
    <kwd>processes of formation of boundary conditions</kwd>
    <kwd>thermal power hydraulic system</kwd>
    <kwd>perturbed state of the system</kwd>
    <kwd>flow distribution analysis</kwd>
    <kwd>energy equivalence</kwd>
    <kwd>variational principle.</kwd>
   </kwd-group>
  </article-meta>
 </front>
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  <p></p>
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