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Published in: Journal of Engineering Thermophysics 1/2020

01-02-2020

Computational Modeling of Turbulent Flows

Authors: Vas. V. Salomatov, Vl. V. Salomatov

Published in: Journal of Engineering Thermophysics | Issue 1/2020

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Abstract

The article presents an improved numerical method developed for calculating turbulent flows basing on the algorithm SIMPLE, Rhie–Chow interpolation on non-staggered grids, and monotonic second and third order accurate TDV schemes. The use of high-order difference schemes for calculation of viscous flows enables achievement of significantly better resolution of the algorithm on coarse grids, which decisively affects the efficiency of two-dimensional and especially three-dimensional calculations.

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Literature
1.
go back to reference Patankar, S.V., Numerical Heat Transfer and Fluid Flow, Hemisphere, 1980. Patankar, S.V., Numerical Heat Transfer and Fluid Flow, Hemisphere, 1980.
2.
go back to reference Godunov, S.K. and Ryaben’kii, V.S., Raznostnye skhemy (Difference schemes), Moscow: Nauka, 1973. Godunov, S.K. and Ryaben’kii, V.S., Raznostnye skhemy (Difference schemes), Moscow: Nauka, 1973.
3.
go back to reference Leonard, B.P., Locally-Modified QUICK Scheme for Highly Convective 2D and 3D Flows, Proc. 5th. Conf. Num. Meth. Laminar and Turbulent Flow, Montreal, 1987, p. 35. Leonard, B.P., Locally-Modified QUICK Scheme for Highly Convective 2D and 3D Flows, Proc. 5th. Conf. Num. Meth. Laminar and Turbulent Flow, Montreal, 1987, p. 35.
4.
go back to reference Leonard, B.P., Simple High-Accuracy Resolution Program for Convective Modelling of Discontinuities, Int. J. Num. Meth. Fluids, 1998, vol. 8, p. 1291. Leonard, B.P., Simple High-Accuracy Resolution Program for Convective Modelling of Discontinuities, Int. J. Num. Meth. Fluids, 1998, vol. 8, p. 1291.
5.
go back to reference Harton, F., High Resolution Schemes for Hyperbolic Conservation Laws, J. Comput. Phys., 1998, vol. 49, pp. 357–393. Harton, F., High Resolution Schemes for Hyperbolic Conservation Laws, J. Comput. Phys., 1998, vol. 49, pp. 357–393.
6.
go back to reference Shyy, W., Computational Modelling for Fluid Flow and Interfacial Transport, New York: Elsevier, 1994. Shyy, W., Computational Modelling for Fluid Flow and Interfacial Transport, New York: Elsevier, 1994.
7.
go back to reference Yee, H.C., Construction of Explicit and Implicit Symmetric TVD Schemes and Their Applications, J. Comput. Phys., 1987, vol. 68, pp. 151–179. Yee, H.C., Construction of Explicit and Implicit Symmetric TVD Schemes and Their Applications, J. Comput. Phys., 1987, vol. 68, pp. 151–179.
8.
go back to reference Fletcher, C., Computational Techniques in Fluid Dynamics, Springer, 1988. Fletcher, C., Computational Techniques in Fluid Dynamics, Springer, 1988.
9.
go back to reference Gryazin, Yu.A. and Cherny, S.G., On a Method of Numerically Solving Three-Dimensional Problems of Incompressible Fluid Dynamics,Dokl. RAN, 1997, vol. 353, no. 4, pp. 478–483. Gryazin, Yu.A. and Cherny, S.G., On a Method of Numerically Solving Three-Dimensional Problems of Incompressible Fluid Dynamics,Dokl. RAN, 1997, vol. 353, no. 4, pp. 478–483.
10.
go back to reference Rhie, C.M. and Chow, W.L., Numerical Study of the Turbulent Flow past an Airfoil with Trailing Edge Separation, AIAA J., 1993, vol. 21, pp. 1525–1532. Rhie, C.M. and Chow, W.L., Numerical Study of the Turbulent Flow past an Airfoil with Trailing Edge Separation, AIAA J., 1993, vol. 21, pp. 1525–1532.
11.
go back to reference Davidson, L., An Introduction in Turbulence Models, Göteborg: Dept. of Thermo and Fluid Dynamics. Chalmers Univ. of Technology, 1997. Davidson, L., An Introduction in Turbulence Models, Göteborg: Dept. of Thermo and Fluid Dynamics. Chalmers Univ. of Technology, 1997.
12.
go back to reference Anderson, D., Tannehill, J.C., and Pletcher, R.H.,Computational Fluid Mechanics and Heat Transfer, Hemisphere, 1984. Anderson, D., Tannehill, J.C., and Pletcher, R.H.,Computational Fluid Mechanics and Heat Transfer, Hemisphere, 1984.
Metadata
Title
Computational Modeling of Turbulent Flows
Authors
Vas. V. Salomatov
Vl. V. Salomatov
Publication date
01-02-2020
Publisher
Pleiades Publishing
Published in
Journal of Engineering Thermophysics / Issue 1/2020
Print ISSN: 1810-2328
Electronic ISSN: 1990-5432
DOI
https://doi.org/10.1134/S1810232820010117

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