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首页> 外文期刊>Journal of Computational Physics >A positivity-preserving, implicit defect-correction multigrid method for turbulent combustion
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A positivity-preserving, implicit defect-correction multigrid method for turbulent combustion

机译:湍流燃烧的保正性隐式缺陷校正多重网格方法

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摘要

A novel, robust multigrid method for the simulation of turbulent and chemically reacting flows is developed. A survey of previous attempts at implementing multigrid for the problems at hand indicated extensive use of artificial stabilization to overcome numerical instability arising from non-linearity of turbulence and chemistry model source-terms, small-scale physics of combustion, and loss of positivity. These issues are addressed in the current work. The highly stiff Reynolds-averaged Navier-Stokes (RANS) equations, coupled with turbulence and finite-rate chemical kinetics models, are integrated in time using the unconditionally positive-convergent (UPC) implicit method. The scheme is successfully extended in this work for use with chemical kinetics models, in a fully-coupled multigrid (FC-MG) framework.
机译:开发了一种新颖,鲁棒的多网格方法,用于模拟湍流和化学反应流。对先前针对手头问题实施多重网格的尝试的一项调查表明,人工稳定化已被广泛使用,以克服由湍流和化学模型源项的非线性,小规模燃烧物理学和正性损失引起的数值不稳定。这些问题在当前工作中得到解决。使用无条件正收敛(UPC)隐式方法,可以对高度刚性的雷诺平均Navier-Stokes(RANS)方程,加上湍流和有限速率化学动力学模型进行及时积分。该方案已在这项工作中成功扩展,可以在完全耦合的多网格(FC-MG)框架中与化学动力学模型一起使用。

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