Comparative analysis of CFD SIGMAFLOW and FLUENT packages by the example of solving laminar test problems
This paper presents a comparative analysis of two software systems for solving computational fluid dynamics: SigmaFlow and Fluent. With the help of the programs, several laminar test problems were solved. The results are compared with each other and with experimental data and calculations of other authors.
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Keywords
вычислительная гидродинамика, Fluent, SigmaFlow, уравнения Навье - Стокса, CFD-пакеты, ламинарное течение, Computational fluid dynamics, Fluent, SigmaFlow, Navier-Stokes equations, CFD packages, laminar flowAuthors
Name | Organization | |
Platonov Dmitriy Viktorovich | Siberian Federal University (Krasnoyarsk) | platonov-08@yandex.ru |
Minakov Andrey Viktorovich | Siberian Federal University (Krasnoyarsk) | tov-andrey@yandex.ru |
Dekterev Alexandr Anatolievich | Siberian Federal University (Krasnoyarsk) | dekterev@mail.ru |
Kharlamov Yegor Borisovich | Heat and mass transfer deparment of Siberian branch of Russian science academy |
References
Гаврилов А.А., Минаков А.В., Дектерев А.А., Рудяк В.Я. Численный алгоритм для моделирования ламинарных течений в кольцевом канале с эксцентриситетом // Сиб. журн. индустр. матем. 2010. Т. 13. № 4. C. 3-14.
Minakov A.V., Rudyak V.Ya., Gavrilov A.A., Dekterev A.A. On optimization of mixing process of liquids in microchannels // J. Siberian Federal University. Mathematics & Physics. 2010. V. 3(2). P. 146-156.
Рудяк В.Я., Минаков А.В., Гаврилов А.А., Дектерев А.А. Моделирование течений в микромиксерах // Теплофизика и аэромеханика. 2010. Т. 17. № 4. С. 601-612.
Patankar S.V. Numerical heat transfer and fluid flow. Washington, DC, Hemisphere, 1980. P. 180.
Ferziger J.H. andPeric M. Computational methods for fluid dynamics. Berlin: Springer Ver-lag, 2002. P. 423.
Leonard B.P. A stable and accurate convective modeling procedure based on quadratic upstream interpolation // Comp. Math. Appl. Mech. Eng. 1979. V. 19. P. 59-98.
Белов И.А. Моделирование турбулентных течений: учеб. пособие БГТУ. 2001. Вып. 10. С. 107.
Быстров Ю.А. Численное моделирование вихревой интенсификации теплообмена в пакетах труб / Ю.А. Быстров, С.А. Исаев, Н.А. Кудрявцев, А.И. Леонтьев. М.: Судостроение, 2005. C. 389.
Kim S.-W. A velocity-pressure integrated, mixed interpolation, Galerkin finite element method for high Reynolds number laminar flows / S.-W. Kim // NASA. Report CR-179264. 1988. P. 1988.
Ghia U., Ghia K.N., and Shin C.T. High-Re solutions for incompressible flow using the Navier - Stokes equations and a multigrid metod // J. Computational Physics. 1982. V. 48. P. 378-411.
Исаев С.А. Численное моделирование вихревой интенсификации теплообмена в пакетах труб / Ю.А. Быстров, С.А. Исаев, Н.А. Кудрявцев, А.И. Леонтьев. СПб.: Судостроение, 2005. 392 с.
Escudier M.P. Observations of the flow produced in a cylindrical container by a rotating endwall // Exp. in Fluids. 1984. V. 2. №. 4. P. 189-196.
Michelsen J.A. Modeling Incompressible Rotating Fluid Flow, AFM 86-05, Ph.D. Dissertation, Department of Fluid Mechanics, Technical University of Denmark, 1986.
Enayet M.M., Gibson M.M. Laser Doppler measurements of laminar and turbulent flow in pipe bend // NASA contractor report 3551. 1982.
Лойцянский Л.Г. Механика жидкости и газа. М.: Наука, 1970. 840 c.

Comparative analysis of CFD SIGMAFLOW and FLUENT packages by the example of solving laminar test problems | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2013. № 1(21).
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