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Turbulence modification by inertial particles and its influence on the spectral energy budget in planar Couette flow

机译:惯性粒子对湍流的修正及其对平面Couette流中光谱能量收支的影响

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摘要

Two-way coupled, particle-laden simulations are performed in turbulent Couette flow with the purpose of investigating the spectral extent of the particle influence on the turbulent energy cascade in wall-bounded flows. Direct numerical simulation of the carrier phase is performed in conjunction with the Lagrangian point-particle approximation for particles of three distinct inertia ranges: St(K) = [O(1), O(10), O(100)]. Simulations are also performed at three increasing Reynolds numbers (Re-tau approximate to [125,325,900]) to determine the longevity of these effects as the scale separation between large and small motions is increased. A spectral decomposition of the turbulent kinetic energy (TKE) budget shows that two simultaneous effects of particles are occurring: first, the mere presence of particles causes a reduction of TKE production across nearly the entire wavenumber range, where the particle Stokes number only determines the magnitude of this reduction; second, the direct energy exchange term between the carrier and dispersed phases is relatively small in magnitude compared to changes in production; however, its location in wavenumber space is highly dependent on Stokes number and is influenced heavily by preferential concentration. The combined effect of these distinct processes is important to consider when developing large eddy simulation (or any other) two-way coupled particle-laden turbulence parameterizations. (C) 2015 AIP Publishing LLC.
机译:在湍流库埃特流中进行双向耦合,充满粒子的模拟,目的是调查粒子对壁边界流中湍流能量级联的影响的频谱范围。结合三个不同惯性范围:St(K)= [O(1),O(10),O(100)]的粒子的拉格朗日点粒子近似值,进行了载波相位的直接数值模拟。还以三个增加的雷诺数(Re-tau近似于[125,325,900])进行模拟,以确定随着大,小运动之间的音阶间距增加,这些效果的寿命。湍动能(TKE)预算的频谱分解表明,同时发生了两个粒子效应:首先,仅粒子的存在会在几乎整个波数范围内降低TKE的产生,而粒子的斯托克斯数只能确定减少幅度;第二,与生产变化相比,载体和分散相之间的直接能量交换项的量较小。然而,它在波数空间中的位置高度依赖于斯托克斯数,并且受优先集中度的影响很大。在开发大型涡流仿真(或任何其他)双向耦合的带颗粒湍流参数化时,必须考虑这些不同过程的综合效果。 (C)2015 AIP Publishing LLC。

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