Моделирование и анализ процессов смешения неизотермических потоков в энергетических установках
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Научный журнал Моделирование, оптимизация и информационные технологииThe scientific journal Modeling, Optimization and Information Technology
Online media
issn 2310-6018

Modeling and analysis of mixing processes of nonisothermal flows in power plants

idSataev A.A. idIgonin M.A. idSharafetdinova K.V. idChesnokov S.A. idAndreev V.V.

UDC 519.6, 621.039
DOI: 10.26102/2310-6018/2020.28.1.0

  • Abstract
  • List of references
  • About authors

The use of modern computational fluid dynamics (CFD) programs for the analysis and justification of individual elements of equipment and operating modes of reactor plants is extremely promising. With the help of these computer systems, it is possible to analyze the operating conditions of elements of the equipment of reactor plants operating under significant thermocycler fluctuations, and to analyze the readings of elements of the complex control system for technical means in order to optimize algorithms and operating modes. Also, an equally important task is to analyze the temperature field at the entrance to the core under asymmetric operating conditions of the reactor plant. To implement these systems in practical use, it is necessary to create an experimental base for verification of these programs. Due to the fact that conducting experiments close in parameters to real reactor plants operating at enormous pressures is associated with significant economic costs, most of the phenomena occurring in the systems under consideration can be studied with a sufficient degree of representativeness on smallscale models operating on water at pressures close to atmospheric or pressures up to 1 MPa. As part of this work, a computational study of mixing processes of non-isothermal flows in a single loop of the ship's nuclear power plant model (NPP) was carried out using COMSOL Multiphysics and Solid Works Flow simulation software systems, and the results were verified at the research stand "Single-Loop NPP model". As a result of this work, the temperature distribution was obtained in the characteristic regions of the single-loop mixing model (ring gap, lower chamber, hole sheet, core simulator), as well as an empirical dependence describing the mixing processes with a sufficient degree of accuracy. In the future, the empirical model will be further refined in order to create universal high-accuracy dependence for predicting mixing processes.

1. Ryabov A.A., Skibin A.P., Volkov V.Yu., Golibrodo L.A., Krutikov A.A., Kudryavtsev O.V. Sozdanie tsifrovogo dvoinika AEHS na osnove vychislitel'noi teplogidravliki. CAD/cam/cae Observer. 2018;7(123):41-45.

2. Belova, O.V., Volkov V.Yu., Skibin A.P., Nikolaeva A.V., Krutikov A.A., Chernyshev A.V. Metodologicheskie osnovy CFD-raschetov dlya podderzhki proektirovaniya pnevmogidravlicheskikh sistem. Inzhenernyi zhurnal: nauka i innovatsii. 2013;(5):1-13.

3. Bol'shukhin M.A., Budnikov A.V., Fomichev V.I., Sveshnikov D.N., Romanov R.I. Aktual'nye voprosy razvitiya ehksperimental'noi bazy dannykh dlya verifikatsii CFD programm pri ikh ispol'zovanii v atomnoi ehnergetike. Trudy Nizhegorodskogo gosudarstvennogo tekhnicheskogo universiteta im. R.E. Alekseeva. 2013;2(99):117-125.

4. Krapivtsev V.G., Solonin V.I. Model Studies of Interloop Coolant Mixing in VVER-1000 in-Reactor Pressure Channel. Atomic Energy. 2019;5(125):307-313.

5. Gukhman A.A. Vvedenie v teoriyu podobiya. M.: Vysshaya shkola; 1973.

6. Alyamovskii A.A. i dr. SolidWorks. Komp'yuternoe modelirovanie v inzhenernoi praktike. SPb.: BKHV-Peterburg; 2005.

7. Kovalenko A.V. Matematicheskoe modelirovanie fiziko-khimicheskikh protsessov v srede Comsol Multiphysics 5.2. SPb.: Lan'; 2017.

8. Advances in small modular reactor technology developments. A Supplement to: IAEA Advanced Reactors Information System (ARIS). Austria: IAEA; 2018.

9. Sataev A.A., Duntsev A.V., Vorob'ev D.A., Krasavin N.A. Issledovanie protsessov smesheniya neizotermicheskikh potokov na odnopetlevoi modeli reaktornoi ustanovki. Sovremennye naukoemkie tekhnologii. 2018;(3):96-101. Available at: http://www.toptechnologies.ru/ru/article/view?id=36943 (accessed 09.03.2020).

10. Sataev A.A., Duntsev A.V. Issledovanie protsessov smesheniya neizotermicheskikh potokov na modeli sudovoi yadernoi ehnergeticheskoi ustanovki. Vestnik IGEHU. 2018;(5):26-32. Available at: http://vestnik.ispu.ru/ru/node/729 (accessed 09.03.2020).

Sataev Aleksandr Alexandrovich

Email: sancho_3685@mail.ru

ORCID |

Nizhny Novgorod State Technical University named after R.E. Alekseev

Nizhny Novgorod, Russian Federation

Igonin Mikhail Alexandrovich

Email: igonin.mihail.97@gmail.com

ORCID |

Nizhny Novgorod State Technical University named after R.E. Alekseev

Nizhny Novgorod, Russian Federation

Sharafetdinova Kseniya Vladimirovna

Email: ksen.sharafetdinova@gmail.com

ORCID |

Nizhny Novgorod State Technical University named after R.E. Alekseev

Nizhny Novgorod, Russian Federation

Chesnokov Sergei Andreevich

Email: sergeychesand@gmail.com

ORCID |

Nizhny Novgorod State Technical University named after R.E. Alekseev

Nizhny Novgorod, Russian Federation

Andreev Vyacheslav Viktorovich
Doctor of Technical Sciences, Associate Professor
Email: vyach.andreev@mail.ru

ORCID |

Nizhny Novgorod State Technical University named after R.E. Alekseev

Nizhny Novgorod, Russian Federation

Keywords: non-isothermal flow mixing, cfd modeling, temperature field, verification, single-loop model

For citation: Sataev A.A. Igonin M.A. Sharafetdinova K.V. Chesnokov S.A. Andreev V.V. Modeling and analysis of mixing processes of nonisothermal flows in power plants. Modeling, Optimization and Information Technology. 2020;8(1). Available from: https://moit.vivt.ru/wp-content/uploads/2020/02/SataevSoavtori_1_20_1.pdf DOI: 10.26102/2310-6018/2020.28.1.0 (In Russ).

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