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Anisotropic linear forcing for synthetic turbulence generation in large eddy simulation and hybrid RANS/LES modeling

机译:大涡模拟和混合RANS / LES建模中合成湍流的各向异性线性强迫

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摘要

A general forcing method for Large Eddy Simulation (LES) is proposed for the purpose of providing the flow with fluctuations that satisfy a desired statistical state. This method, the Anisotropic Linear Forcing (ALF) introduces an unsteady linear tensor function of the resolved velocity which acts as a restoring force in the mean velocity and resolved stress budgets. The ALF generalizes and extends several forcing previously proposed in the literature. In order to make it possible to impose the integral length scale of the turbulence generated by the forcing term, an alternative formulation of the ALF, using a differential spatial filter, is proposed and analyzed. The anisotropic forcing of the Reynolds stresses is particularly attractive, since unsteady turbulent fluctuations can be locally enhanced or damped, depending on the target stresses. As such, it is shown that the ALF is an effective method to promote turbulent fluctuations downstream of the LES inlet or at the interface between RANS and LES in zonal hybrid RANS/LES modeling. The detailed analysis of the influence of the ALF parameters in spatially developing channel flows and hybrid computations where the ALF target statistics are given by a RANS second-moment closure show that this original approach performs as well as the synthetic eddy method. However, since the ALF method is more flexible and significant computational savings are obtained, the method appears a promising all-in-one solution for general embedded LES simulations. (C) 2015 AIP Publishing LLC.
机译:为了给流动提供满足期望统计状态的波动,提出了一种大涡模拟(LES)的通用强迫方法。这种方法,各向异性线性强迫(ALF)引入了分解速度的不稳定线性张量函数,该函数在平均速度和分解应力预算中充当恢复力。 ALF概括并扩展了文献中先前提出的几种强制。为了能够强加由强迫项产生的湍流的积分长度尺度,提出并分析了使用差分空间滤波器的ALF的替代公式。雷诺应力的各向异性强迫特别有吸引力,因为取决于目标应力,可以局部增强或减弱不稳定的湍流波动。因此,在区域混合RANS / LES模型中,ALF是促进LES入口下游或RANS与LES之间的界面湍流波动的有效方法。对ALF参数在空间发展通道流和混合计算中的影响进行的详细分析(通过RANS第二矩闭合给出ALF目标统计数据)表明,这种原始方法的性能与综合涡流方法相同。但是,由于ALF方法更加灵活并且节省了大量计算资源,因此对于一般的嵌入式LES仿真,该方法似乎是一种很有前途的多合一解决方案。 (C)2015 AIP Publishing LLC。

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