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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A new characteristic approach for incompressible thermo-flow in Cartesian and non-Cartesian grids
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A new characteristic approach for incompressible thermo-flow in Cartesian and non-Cartesian grids

机译:笛卡尔网格和非笛卡尔网格中不可压缩热流的新特征方法

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摘要

A virtual-characteristic approach is developed for thermo-flow with finite-volume methodology in which a multidimensional characteristic (MC) scheme is applied along with artificial compressibility. To obtain compatibility equations and pseudo-characteristics, energy equation is taken into account in the MC scheme. With this inherent upwinding of convective fluxes, no artificial viscosity is required even at high Reynolds numbers. Another remarkable advantage of the MC scheme lies in its faster convergence rate with respect to the averaging scheme that is found to exhibit substantial delays in convergence. As benchmarks, forced and mixed convections in a cavity and in flow over cylinder and between parallel plates are examined for a wide range of Reynolds, Grashof, and Prandtl numbers. The MC and averaging schemes are applied for simulation purposes. Results show the better performance of the MC scheme in forced and mixed convections. Results confirm the robustness of the MC scheme in terms of accuracy and convergence. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:利用有限体积方法开发了一种用于热流的虚拟特征方法,其中,多维特征(MC)方案与人工可压缩性一起应用。为了获得兼容性方程和伪特性,在MC方案中考虑了能量方程。由于固有的对流通量增加,即使在高雷诺数下也不需要人工粘度。 MC方案的另一个显着优势在于,相对于平均方案而言,它的收敛速度更快,而平均方案发现收敛会出现实质性的延迟。作为基准,检查了雷诺数,格拉斯霍夫数和普朗特数在腔内和圆柱体上以及平行板之间的强制对流和混合对流。 MC和平均方案用于仿真目的。结果表明,MC方案在强制对流和混合对流中具有更好的性能。结果证实了MC方案在准确性和收敛性方面的鲁棒性。版权所有(c)2015 John Wiley&Sons,Ltd.

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