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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Anisotropic Stochastic Vortex Structure Method for Simulating Particle Collision in Turbulent Shear Flows
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Anisotropic Stochastic Vortex Structure Method for Simulating Particle Collision in Turbulent Shear Flows

机译:APS-流体动力学APS分部第70届年会-事件-湍流剪切流中模拟颗粒碰撞的各向异性随机涡结构方法

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摘要

Accounting for the effect of subgrid-scale turbulence on interacting particles remains a challenge when using Reynolds-Averaged Navier Stokes (RANS) or Large Eddy Simulation (LES) approaches for simulation of turbulent particulate flows. The standard stochastic Lagrangian method for introducing turbulence into particulate flow computations is not effective when the particles interact via collisions, contact electrification, etc., since this method is not intended to accurately model relative motion between particles. We have recently developed the stochastic vortex structure (SVS) method and demonstrated its use for accurate simulation of particle collision in homogeneous turbulence; the current work presents an extension of the SVS method to turbulent shear flows. The SVS method simulates subgrid-scale turbulence using a set of randomly-positioned, finite-length vortices to generate a synthetic fluctuating velocity field. It has been shown to accurately reproduce the turbulence inertial-range spectrum and the probability density functions for the velocity and acceleration fields. In order to extend SVS to turbulent shear flows, a new inversion method has been developed to orient the vortices in order to generate a specified Reynolds stress field. The extended SVS method is validated in the present study with comparison to direct numerical simulations for a planar turbulent jet flow.
机译:当使用雷诺平均Navier斯托克斯(RANS)或大涡模拟(LES)方法来模拟湍流颗粒流时,考虑亚网格尺度湍流对相互作用粒子的影响仍然是一个挑战。当粒子通过碰撞,接触带电等相互作用时,将湍流引入粒子流计算的标准随机拉格朗日方法无效,因为该方法并非旨在准确地模拟粒子之间的相对运动。最近,我们开发了随机涡结构(SVS)方法,并证明了该方法可用于精确模拟均匀湍流中的粒子碰撞。当前的工作是将SVS方法扩展到湍流剪切流。 SVS方法使用一组随机放置的有限长度涡旋来模拟子网格尺度的湍流,以生成合成的脉动速度场。它已经显示出可以精确地再现速度场和加速度场的湍流惯性范围谱和概率密度函数。为了将SVS扩展到湍流剪切流,已经开发了一种新的反演方法来定向涡流,以便生成指定的雷诺应力场。扩展的SVS方法在本研究中得到了验证,并与平面湍流射流的直接数值模拟进行了比较。

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