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Massively parallel simulation of shock/boundary-layer interactions

机译:冲击/边界层相互作用的大规模并行模拟

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Massively parallel direct numerical simulation (DNS) of turbulent flows, including shock/boundary-layerinteractions (SBLI), has been carried out in this study. The code uses high order central finite differences for evaluating spatial derivatives in the 3D compressible Navier-Stokes (NS) equations and explicit multi-stage Runge-Kutta algorithm for the time advancement. To detect discontinuities a shock-capturing method of the total variation diminishing (TVD) family, combined with the artificial compression method (ACM), is employed. Some recently developed techniques like entropy splitting of Euler terms and stable boundary treatment are also implemented. The code has been parallelized using the message passing interface (MPI) library and demonstrated its capability to achieve an efficient simulation. Validations have been carried out on a wide range of flow problems, including some well-documented channel and boundary-layer flows. A simulation has been carried out for a viscous flow over a curved bump, a configuration with simple geometry but exhibiting complicated flow physics, in which a shock wave appears under certain flow conditions and the flow separates due to strong adverse pressure gradients and shock/boundary-layer interactions. Simulation results are given and comparisons with theory and existing DNS data are promising.
机译:在这项研究中,进行了湍流的大规模并行直接数值模拟(DNS),包括冲击/边界层相互作用(SBLI)。该代码使用高阶中心有限差分来评估3D可压缩Navier-Stokes(NS)方程中的空间导数,并使用明确的多级Runge-Kutta算法进行时间提前。为了检测不连续性,采用了总变化量减少(TVD)系列的震荡捕获方法,并结合了人工压缩方法(ACM)。还实现了一些最近开发的技术,例如欧拉项的熵分裂和稳定的边界处理。该代码已使用消息传递接口(MPI)库进行了并行化,并展示了其实现高效仿真的能力。已经对各种流动问题进行了验证,包括一些有据可查的通道和边界层流动。已经对弯曲凸块上的粘性流动进行了模拟,这种形状具有简单的几何形状,但具有复杂的流动物理特性,其中在某些流动条件下会出现冲击波,并且由于强烈的不利压力梯度和冲击/边界而使流动分离层交互。给出了仿真结果,并与理论和现有的DNS数据进行了比较。

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