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Choice of implicit and explicit operators for the upwind differencing method

机译:选择迎风微分法的隐式和显式算子

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摘要

The flux-vector and flux-difference splittings of Steger-Warming, van Leer and Roe are tested in all possible combinations on the implicit and explicit operators that can be distinguished in implicit relaxation methods for the steady Euler and Navier-Stokes equations. The tests include one-dimensional inviscid nozzle flow, and two-dimensional inviscid and viscous shock reflection. Roe's splitting, as anticipated, is found to uniformly yield the most accurate results. On the other hand, an approximate Roe splitting of the implicit operator (the complete Roe splitting is too complicated for practical use) proves to be the least robust with regard to convergence to the steady state. In this respect, the Steger-Warming splitting is the most robust; it leads to convergence when combined with any of the splittings in the explicit operator, although not necessarily in the most efficient way.
机译:在隐式和显式算子上所有可能的组合上测试了Steger-Warming,van Leer和Roe的通量矢量和通量差分裂,可以用隐式松弛方法区分稳态Euler和Navier-Stokes方程。测试包括一维不粘喷嘴流动,以及二维不粘和粘性冲击反射。如预期的那样,发现Roe的分裂均匀地产生了最准确的结果。另一方面,隐式算符的近似Roe分裂(对于实际使用而言,完整的Roe分裂太复杂了)在收敛到稳态方面被证明是最不稳健的。在这方面,Steger-Warming拆分是最可靠的。当与显式运算符中的任何拆分组合时,它会导致收敛,尽管不一定以最有效的方式。

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