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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Study of Local Turbulence Profiles Relative to the Particle Surface in Particle-Laden Turbulent Flows
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Study of Local Turbulence Profiles Relative to the Particle Surface in Particle-Laden Turbulent Flows

机译:含颗粒湍流中相对于颗粒表面的局部湍流分布研究

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摘要

As particle-resolved simulations (PRSs) of turbulent flows laden with finite-size solid particles become feasible, methods are needed to analyze the simulated flows in order to convert the simulation data to a form useful for model development. In this paper, the focus is on turbulence statistics at the moving fluid-solid interfaces. An averaged governing equation is developed to quantify the radial transport of turbulent kinetic energy when viewed in a frame moving with a solid particle. Using an interface-resolved flow field solved by the lattice Boltzmann method (LBM), we computed each term in the transport equation for a forced, particle-laden, homogeneous isotropic turbulence. The results illustrate the distributions and relative importance of volumetric source and sink terms, as well as pressure work, viscous stress work, and turbulence transport. In a decaying particle-laden flow, the dissipation rate and kinetic energy profiles are found to be self-siimilar.
机译:随着载有有限尺寸固体颗粒的湍流的颗粒解析模拟(PRS)变得可行,需要使用方法来分析模拟流,以将模拟数据转换为对模型开发有用的形式。在本文中,重点是在流固界面处的湍流统计。当在与固体颗粒一起移动的框架中观察时,开发了平均控制方程来量化湍动能的径向传输。使用通过格子玻尔兹曼方法(LBM)求解的界面解析流场,我们计算了传输方程中强迫的,充满粒子的均质各向同性湍流的各项。结果说明了体积源和汇项以及压力功,粘性应力功和湍流输运的分布和相对重要性。在衰减的载有颗粒的流中,发现耗散率和动能分布是自相似的。

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