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An upwind space-time conservation element and solution element scheme for solving dusty gas flow model

机译:求解粉尘气流模型的迎风时空守恒元和求解元方案

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An upwind space-time conservation element and solution element (CE/SE) scheme is extended to numerically approximate the dusty gas flow model. Unlike central CE/SE schemes, the current method uses the upwind procedure to derive the numerical fluxes through the inner boundary of conservation elements. These upwind fluxes are utilized to calculate the gradients of flow variables. For comparison and validation, the central upwind scheme is also applied to solve the same dusty gas flow model. The suggested upwind CE/SE scheme resolves the contact discontinuities more effectively and preserves the positivity of flow variables in low density flows. Several case studies are considered and the results of upwind CE/SE are compared with the solutions of central upwind scheme. The numerical results show better performance of the upwind CE/SE method as compared to the central upwind scheme.
机译:扩展了迎风时空守恒元素和解元素(CE / SE)方案,以数值模拟粉尘气流模型。与中央CE / SE方案不同,当前方法使用迎风程序来导出通过守恒元素内边界的数值通量。这些逆风通量用于计算流量变量的梯度。为了进行比较和验证,还采用了中央迎风方案来求解相同的含尘气流模型。建议的迎风CE / SE方案可以更有效地解决接触不连续性,并在低密度流中保持流变量的正性。考虑了几个案例研究,并将迎风CE / SE的结果与中央迎风方案的解决方案进行了比较。数值结果表明,与中央迎风方案相比,迎风CE / SE方法具有更好的性能。

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