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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Efficient numerical simulation of aeroacoustics for low Mach number flows interacting with structures
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Efficient numerical simulation of aeroacoustics for low Mach number flows interacting with structures

机译:对与结构相互作用的低马赫数流动的气动声学进行高效的数值模拟

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An integrated hybrid approach for the numerical simulation of aeroacoustics at low Mach numbers is presented. The method is based on a viscous/acoustic splitting. The turbulent incompressible background flow is computed with large eddy simulation, based on the incompressible Navier-Stokes equations, whereas the acoustics are computed from linearized Euler equations with a high-resolution scheme. The focus is on the numerical efficiency of the approach. To accelerate the computations, hierarchical grids and a frozen fluid approach for the acoustics are employed and investigated. For validation and the investigation of the numerical efficiency and accuracy the sound emission of a plate in the turbulent wake of a circular cylinder is employed as a test case.
机译:提出了一种用于低马赫数下气动声学数值模拟的综合混合方法。该方法基于粘性/声学分裂。湍流不可压缩背景流基于不可压缩Navier-Stokes方程,通过大涡模拟计算,而声学则由具有高分辨率方案的线性化欧拉方程计算。重点是该方法的数值效率。为了加速计算,采用并研究了声学的分层网格和冻结流体方法。为了验证和研究数值效率和精度,采用圆形圆柱体湍流尾流中板的声发射作为测试用例。

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