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Generation of Divergence-Free Synthetic Turbulent Velocity Fields for LES/CAA Applications

机译:LES / CAA应用的无差异综合湍流速度的产生

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The direct numerical prediction of broadband noise radiating from realistic turbulent flows interacting with solid surfaces is still in infancy. The main drawback is related to the computational efficiency - both in terms of processing time and storage capacity - but equally important is the accuracy of imposing turbulent inflow boundary conditions or the initiation of the solution with a realistic turbulent flow. In this paper, we introduce a divergence-free synthetic turbulent eddy model based on the assumption that turbulence can be considered as a superposition of random eddies convected with the mean flow. The vector potential and the requirement that the individual eddies must satisfy the linearized momentum equations about the mean flow are used to enforce the divergence-free condition. Experimental benchmark data for spatially decaying isotropic turbulence and nonhomogeneous rotor-wake turbulence are used to evaluate the proposed synthetic eddy method.
机译:宽带噪声从与实际表面相互作用的宽带噪声辐射的直接数值预测仍处于初期阶段。主要缺点与计算效率相关 - 无论是在处理时间和存储容量方面 - 但同样重要的是施加湍流流入边界条件的准确性或用逼真的湍流引发溶液的启动。在本文中,我们基于湍流被认为是随机漩涡的叠加的假设引入了一种无源性合成湍流涡流模型。矢量潜力和各个漩涡必须满足关于平均流量的线性化动量方程的要求用于强制无分歧状态。用于空间衰减各向同性湍流和非均匀转子 - 卷轴湍流的实验基准数据用于评估所提出的合成涡流方法。

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