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An investigation of the lattice Boltzmann equation-based hybrid approach for simulation of sound generated by isotropic turbulence

机译:基于格子Boltzmann方程的混合方法研究各向同性湍流产生的声音

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摘要

We study noise radiated by forced isotropic turbulence numerically using a hybrid approach, i.e. lattice Boltzmann equation-based DNS/acoustic analogy. In the present contribution, a deterministic force model is developed in direct LBM simulations and its characteristics is analyzed and compared to a recently proposed stochastic forcing scheme. The fluctuating acoustic pressure, acoustical spectrum and sound pressure level are first evaluated on the ground of the hybrid approach and compared with the results from various numerical and analytical solutions. In this paper, we also address the effects of local time delay based on different forcing schemes on prediction of the radiated noise when Lighthill's acoustic analogy and LBM are used for computation of the turbulent flow field and acoustic field.
机译:我们使用混合方法(即基于晶格Boltzmann方程的DNS /声学类比)以数值方式研究强迫各向同性湍流辐射的噪声。在目前的贡献中,在直接的LBM模拟中开发了确定性力模型,并对其特征进行了分析,并与最近提出的随机强迫方案进行了比较。首先基于混合方法评估波动的声压,声谱和声压级,然后将其与各种数值和分析解决方案的结果进行比较。在本文中,当Lighthill的声比拟和LBM用于湍流场和声场的计算时,我们还解决了基于不同强制方案的局部时延对辐射噪声预测的影响。

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