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JOURNALS // Matematicheskoe modelirovanie // Archive

Matem. Mod., 2019 Volume 31, Number 10, Pages 7–21 (Mi mm4114)

This article is cited in 2 papers

Comparison of gradient approximation methods in schemes designed for scale-resolving simulations

S. Bakhnea, S. M. Bosniakovab, S. V. Mikhailovab, A. I. Troshinba

a Moscow Institute of Physics and Technology
b Central Aerohydrodynamic Institute

Abstract: Various methods for improved accuracy approximation of the gradients entering the diffusion fluxes are considered. Linear combinations of 2$^{\mathrm{nd}}$ order difference schemes for a non-uniform grid that transform into 4$^{\mathrm{th}}$ order schemes in the uniform case were investigated. We also considered 3$^{\mathrm{rd}}$ and 4$^{\mathrm{th}}$ order schemes for approximating gradients on a non-uniform grid in the normal and tangent directions to the cell face, respectively, based on Lagrange polynomials. The initial testing was carried out on one-dimensional functions: a smooth Gauss function and a piecewise linear function. Next, the schemes were applied in direct numerical simulation of the Taylor–Green vortex.

Keywords: approximation order, diffusion fluxes, gradients.

Received: 04.03.2019
Revised: 08.04.2019
Accepted: 20.05.2019

DOI: 10.1134/S0234087919100010


 English version:
Mathematical Models and Computer Simulations, 2020, 12:3, 357–367

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© Steklov Math. Inst. of RAS, 2024