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Semi-implicit and fully implicit shock-capturing methods for hyperbolic conservation laws with stiff source terms

机译:具有刚性源项的双曲守恒律的半隐式和全隐式冲击捕获方法

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摘要

Some numerical aspects of finite-difference algorithms for nonlinear multidimensional hyperbolic conservation laws with stiff nonhomogenous (source) terms are discussed. If the stiffness is entirely dominated by the source term, a semi-implicit shock-capturing method is proposed provided that the Jacobian of the soruce terms possesses certain properties. The proposed semi-implicit method can be viewed as a variant of the Bussing and Murman point-implicit scheme with a more appropriate numerical dissipation for the computation of strong shock waves. However, if the stiffness is not solely dominated by the source terms, a fully implicit method would be a better choice. The situation is complicated by problems that are higher than one dimension, and the presence of stiff source terms further complicates the solution procedures for alternating direction implicit (ADI) methods. Several alternatives are discussed. The primary motivation for constructing these schemes was to address thermally and chemically nonequilibrium flows in the hypersonic regime. Due to the unique structure of the eigenvalues and eigenvectors for fluid flows of this type, the computation can be simplified, thus providing a more efficient solution procedure than one might have anticipated.
机译:讨论了具有刚性非齐次(源)项的非线性多维双曲守恒律的有限差分算法的一些数值方面。如果刚度完全由源项主导,则提出一种半隐式冲击捕获方法,前提是含源项的雅可比行列式具有某些性质。所提出的半隐式方法可以看作是Bussing和Murman点隐式方案的一种变体,它具有更合适的数值耗散来计算强冲击波。但是,如果刚度不是仅由源项主导,则完全隐式方法将是更好的选择。这种情况因高于一维的问题而变得复杂,并且刚性源项的存在进一步使交替方向隐式(ADI)方法的求解过程变得复杂。讨论了几种选择。构建这些方案的主要动机是解决高超声速条件下的热和化学非平衡流动。由于这种类型的流体的特征值和特征向量具有独特的结构,因此可以简化计算过程,从而提供了比预期更有效的求解过程。

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    Shinn, J. L.; Yee, H. C.;

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  • 年度 1986
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