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Appraisal of energy recovering sub-grid scale models for large-eddy simulation of turbulent dispersed flows

机译:湍流分散流大涡模拟能量回收子网格模型的评估

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摘要

Current capabilities of Large-Eddy Simulation (LES) in Eulerian-Lagrangian studies of dispersed flows are limited by the modeling of the Sub-Grid Scale (SGS) turbulence effects on particle dynamics. These effects should be taken into account in order to reproduce accurately the physics of particle dispersion since the LES cut-off filter removes both energy and flow structures from the turbulent flow field. In this paper, we examine the possibility of including explicitly SGS effects by incorporating ad hoc closure models in the Lagrangian equations of particle motion. Specifically, we consider candidate models based on fractal interpolation and approximate deconvolution techniques. Results show that, even when closure models are able to recover the fraction of SGS turbulent kinetic energy for the fluid velocity field ( not resolved in LES), prediction of local segregation and, in turn, of near-wall accumulation may still be inaccurate. This failure indicates that reconstructing the correct amount of fluid and particle velocity fluctuations is not enough to reproduce the effect of SGS turbulence on particle near-wall accumulation.
机译:欧拉-拉格朗日散流研究中的大涡模拟(LES)的当前能力受到子网格尺度(SGS)湍流对颗粒动力学影响的建模的限制。由于LES截止过滤器可从湍流场中去除能量和流动结构,因此应考虑到这些影响,以便精确地再现颗粒分散的物理原理。在本文中,我们研究了通过在粒子运动的拉格朗日方程中加入临时闭合模型来明确包括SGS效应的可能性。具体来说,我们考虑基于分形插值和近似反卷积技术的候选模型。结果表明,即使闭合模型能够为流体速度场恢复SGS湍流动能的分数(在LES中未解决),局部偏析的预测以及近壁堆积的预测仍可能不准确。此故障表明重建正确数量的流体和粒子速度波动不足以重现SGS湍流对粒子近壁累积的影响。

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