Bulovich S. V.
1,2, Koyokin V. Yu.
1,21Peter the Great Saint-Petersburg Polytechnic University, St. Petersburg, Russia
2Ioffe Institute, St. Petersburg, Russia
Email: bulovic@yandex.ru, koiokin@mail.ru
The characteristics of a rotary-bladed machine operating in an open-loop gas cycle for cold production are considered. Mathematical modeling of physical and technical processes has been carried out within the framework of numerical integration of the unsteady Reynolds-averaged system of Navier-Stokes equations (URANS). For this purpose, the ANSYS Fluent 2021 R2 software package has been used. The obtained results on the integral performance indicators of the rotary-blade machine allow us to count on its effective use. Keywords: rotary-blade machine, cooler, non-stationary heat exchange, numerical simulation.
- V.G. Fastovsky, Yu V. Petrovsky, A.E. Rovinsky, Kriogennaya tekhnika (Energiya, M., 1967) (in Russian)
- G.I. Bumagin. Porshnevye detandery: uchebnoe posobie (OmPI, Omsk, 1981) (in Russian)
- K. Yamamoto. Rotary engine (Sankaido Co., Tokyo, 1981), p. 67
- K.I. Strahovich, M.I. Frenkel', I.K. Kondryakov, V.F. Ris. Kompressornye mashiny (Gos. izd-vo torgovoj lit-ry, M., 1961), p. 600 (in Russian)
- I.Z. Zajchenko, L.M. Myshlevskij. Plastinchatye nasosy i gidromotory (Mashinostroenie, M., 1970) (in Russian)
- G.J. Thompson, Z.S. Wowczuk, J.E. Smith. Rotary Engines --- A Concept Review (SAE Technical Paper 2003-01-3206), DOI: 10.4271/2003-01-3206
- G. Sadiq, G. Tozer, R. Al-Dadah, S. Mahmoud. Energy Conversion and Management, 142, 42 (2017). DOI: 10.1016/j.enconman.2017.03.040
- G. Huaduo, C. Yaping, W. Jiafeng, J. Yunhui, S. Bengt. Appl. Thermal Eng., 186 (3), (2021). DOI: 10.1016/j.applthermaleng.2020.116526
- D.V. Grinev. Vestnik PskovGU. Ekonomicheskie i tekhnicheskie nauki, 5, 142 (2014) (in Russian)
- Yu.N. ZHuravlev, I.V. Plohov, Yu.N. Luk'yanov, M.A. Donchenko, S.I. Tihonov, A.L. Perminov, A.V. Il'in, S.N. Semenov, A.V. Ivanov, M.L. Andreev, A.A. Hitrov. Matematicheskie modeli fizicheskih processov v rotorno-lopastnom dvigatele s vneshnim podvodom teploty (PskovGU, Pskov, 2012) (in Russian)
- A.I. Dovgyallo, I.V. Kolomin. Vestnik SGAU, 8 (2), 52 (2009) (in Russian)
- I.V. Kolomin, A.I. Dovgyallo, Yu.M. Rusanov, V.V. Lysenkov, Yu.M. Trubnikov. Vestnik SGAU, 5 (2-1), 302 (2006) (in Russian)
- I.V. Kolomin, A.I. Dovgyallo, R.N. Galperin, L.Yu. Gulyaev, A.P. Logashkin. Vestnik SGAU, 8 (3-1), 260 (2009) (in Russian)
- I.V. Kolomin. Rotorno-lopastnoj kompressor dlya bortovoj sistemy ohlazhdeniya letatel'nyh apparatov (Avtoref. kand. diss., SGAU, Samara, 2007) (in Russian)
- D.V. Grinev, M.A. Donchenko, Yu.N. Zhuravlev, V.F. Klein. Tekhnologii i tekhnicheskie sredstva mekhanizirovannogo proizvodstva produkcii rastenievodstva i zhivotnovodstva, 80, 247 (2008) (in Russian)
- Yu.N. ZHuravlev, I.V. Plohov, Yu.N. Luk'yanov, M.A. Donchenko, S.I. Tihonov, A.L. Perminov, A.V. Il'in, S.N. Semenov, A.V. Ivanov, M.L. Andreev, A.A. Hitrov. Raschet i proektirovanie rotorno-lopastnoj mashiny s vneshnim podvodom teploty (PskovGU, Pskov, 2012) (in Russian)
- V.Yu. Koekin, S.V. Bulovich. Nauchno-Tekhicheskie Vedomosti SPbGPU. Fiziko-matematicheskie nauki, 16 (3), 49 (2023) (in Russian). DOI: 10.18721/JPM.16305
- V.Yu. Koekin, S.V. Bulovich. Nauchno-Tekhicheskie Vedomosti SPbGPU. Fiziko-matematicheskie nauki, 17 (4), 20 (2024) (in Russian). DOI: 10.18721/JPM.17402
- S.A. El-Ghafour, M. El-Ghandour, N.N. Mikhael. Energy Conversion and Management, 180, 533 (2019). DOI: 10.1016/j.enconman.2018.10.103
- V.Yu. Koyokin, S.V. Bulovich. XXII Conf. Methods of Aerophysical Research (ICMAR 2024), (Novosibirsk, 2024), DOI: 10.53954/9785604990148_104
Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.
Дата начала обработки статистических данных - 27 января 2016 г.