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Numerical aspects and implementation of a two-layer zonal wall model for LES of compressible turbulent flows on unstructured meshes

机译:非结构网格上可压缩湍流LES的两层带状区域壁模型的数值方面和实现

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This paper focuses on numerical and practical aspects associated with a parallel implementation of a two-layer zonal wall model for large-eddy simulation (LES) of compressible wall-bounded turbulent flows on unstructured meshes. A zonal wall model based on the solution of unsteady three-dimensional Reynolds-averaged Navier-Stokes (RANS) equations on a separate near-wall grid is implemented in an unstructured, cell-centered finite-volume LES solver. The main challenge in its implementation is to couple two parallel, unstructured flow solvers for efficient boundary data communication and simultaneous time integrations. A coupling strategy with good load balancing and low processors underutilization is identified. Face mapping and interpolation procedures at the coupling interface are explained in detail. The method of manufactured solution is used for verifying the correct implementation of solver coupling, and parallel performance of the combined wall-modeled LES (WMLES) solver is investigated. The method has successfully been applied to several attached and separated flows, including a transitional flow over a flat plate and a separated flow over an airfoil at an angle of attack. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文着重于与两层纬向壁模型的并行实现相关的数值和实践方面,该模型用于可压缩壁面湍流在非结构网格上的大涡模拟(LES)。在非结构化,以单元为中心的有限体积LES解算器中,实现了基于非定常三维雷诺平均Navier-Stokes(RANS)方程在单独的近壁网格上求解的带状墙模型。其实现中的主要挑战是将两个并行的非结构化流求解器耦合在一起,以实现有效的边界数据通信和同时的时间积分。确定了具有良好负载平衡和较低处理器利用率不足的耦合策略。详细说明了耦合界面上的人脸映射和插值过程。使用制造的解决方案的方法来验证求解器耦合的正确实现,并研究了组合壁模型LES(WMLES)求解器的并行性能。该方法已成功地应用于多种附着和分离的流动,包括平板上的过渡流动和翼形件上的迎角成角度的分离流动。 (C)2015 Elsevier Inc.保留所有权利。

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