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An a posteriori-implicit turbulent model with automatic dissipation adjustment for Large Eddy Simulation of compressible flows

机译:一种后验湍流模型,自动耗散调整,可压缩流动大型涡流仿真

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In this work we present an a posteriori high-order finite volume scheme for the computation of compressible turbulent flows. An automatic dissipation adjustment (ADA) method is combined with the a posteriori paradigm, in order to obtain an implicit subgrid scale model and preserve the stability of the numerical method. Thus, the numerical scheme is designed to increase the dissipation in the control volumes where the flow is under-resolved, and to decrease the dissipation in those cells where there is excessive dissipation. This is achieved by adding a multiplicative factor to the dissipative part of the numerical flux. In order to keep the stability of the numerical scheme, the a posteriori approach is used. It allows to increase the dissipation quickly in cells near shocks if required, ensuring the stability of the scheme. Some numerical tests are performed to highlight the accuracy and robustness of the proposed numerical scheme. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们提出了一种用于计算可压缩湍流流动的后验高阶有限体积方案。 自动耗散调整(ADA)方法与后验范例组合,以获得隐式底图刻度模型并保持数值方法的稳定性。 因此,数值方案被设计成增加流量被解析的控制体积中的耗散,并降低存在过度耗散的细胞中的耗散。 这是通过向数值通量的耗散部分添加乘法因子来实现的。 为了保持数值方案的稳定性,使用后验方法。 如果需要,它允许在震动附近的细胞中快速耗散耗散,确保该方案的稳定性。 执行一些数值测试以突出提出的数值方案的精度和鲁棒性。 (c)2019年elestvier有限公司保留所有权利。

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