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Review of Lattice Boltzmann Method Applied to Computational Aeroacoustics

机译:格子玻尔兹曼方法在计算航空声学中的应用综述

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摘要

This paper presents the research studies carried out on the application of lattice Boltzmann method (LBM) to computational aeroacoustics (CAA). The Navier-Stokes equation-based solver faces the difficulty of computational efficiency when it has to satisfy the high-order of accuracy and spectral resolution. LBM shows its capabilities in direct and indirect noise computations with superior space-time resolution. The combination of LBM with turbulence models also work very well for practical engineering machinery noise. The hybrid LBM decouples the discretization of physical space from the discretization of moment space, resulting in flexible mesh and adjustable time-marching. Moreover, new solving strategies and acoustic models are developed to further promote the application of LBM to CAA.
机译:本文介绍了将格子玻尔兹曼方法(LBM)应用于计算航空声学(CAA)的研究。当基于Navier-Stokes方程的求解器必须满足高阶精度和光谱分辨率时,将面临计算效率的难题。 LBM展示了其在具有卓越的时空分辨率的直接和间接噪声计算中的功能。 LBM与湍流模型的结合对于实际工程机械噪声也非常有效。混合LBM将物理空间的离散与矩空间的离散解耦,从而实现了灵活的网格和可调整的时间步长。此外,开发了新的求解策略和声学模型,以进一步促进LBM在CAA中的应用。

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