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首页> 外文期刊>Journal of Computational Physics >Characteristic finite-difference WENO scheme for multicomponent compressible fluid analysis: Overestimated quasi-conservative formulation maintaining equilibriums of velocity, pressure, and temperature
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Characteristic finite-difference WENO scheme for multicomponent compressible fluid analysis: Overestimated quasi-conservative formulation maintaining equilibriums of velocity, pressure, and temperature

机译:多组分可压缩流体分析特征有限差异Weno方案:高估准保守配方维持速度,压力和温度平衡

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摘要

The characteristic-interpolation-based finite-difference weighted essentially non-oscillatory (WENO) scheme, which maintains the equilibriums of velocity, pressure, and temperature, is implemented to simulate compressible multicomponent flow fields. We propose the overestimated quasi-conservative form of the characteristic-interpolation-based finite-difference WENO scheme. The proposed WENO scheme is written in the split form that has the consistent and dissipation parts of the numerical flux. The dissipation part of the numerical flux is in the conservative form to maintain the conservation of conservative variables. The scheme implemented in this study can maintain the equilibriums of velocity, pressure, and temperature in various one-and two-dimensional problems. The results of the present studies provide new insights into the vector form of numerical dissipation. (C) 2017 Elsevier Inc. All rights reserved.
机译:基于基于速度,压力和温度的平衡的基于特征的内插的有限差异加权,其维持速度,压力和温度平衡,以模拟可压缩的多组分流场。 我们提出了基于特征插值的有限差异Weno方案的高估准保守形式。 所提出的Weno方案以分裂形式写入,具有数值通量的一致和耗散部分。 数值通量的耗散部分处于保守形式,以维持保守变量的保护。 本研究实施的该方案可以保持各种和二维问题的速度,压力和温度的平衡。 目前研究的结果为数值耗散的矢量形式提供了新的见解。 (c)2017年Elsevier Inc.保留所有权利。

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