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Numerical simulation data for assessment of particle-laden turbulent flow models

机译:用于评估含粒子湍流模型的数值模拟数据

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This paper presents a collection of numerical simulation data which provides a reference for the assessment of various statistical/stochastic models in incompressible homogeneous particle-laden turbulent flows. Four different homogeneous flow configurations are studied, namely, homogeneous shear flow, homogeneous plane strain flow, homogeneous axisymmetric expansion and contraction. An Eulerian-Lagrangian formulation is used for the two-phase flow simulation. A Fourier pseudospectral method is used for the solution of the Eulerian carrier-phase equations without resorting to any turbulence model. The Lagrangian equations for the dispersed phase are integrated using a modified Stokes drag. For the shear flow, both monodispersed and polydispersed particles have been considered. In this paper, only the results that are relevant for assessment of various statistical models for both the fluid and dispersed phases are presented.
机译:本文介绍了一组数值模拟数据,这些数据为评估不可压缩的均质颗粒状湍流中的各种统计/随机模型提供了参考。研究了四种不同的均质流动形态,即均质剪切流动,均质平面应变流动,均质轴对称膨胀和收缩。欧拉-拉格朗日公式用于两相流模拟。傅里叶拟谱方法用于求解欧拉载波相位方程,而无需借助任何湍流模型。使用修改后的斯托克斯阻力对分散相的拉格朗日方程进行积分。对于剪切流,已经考虑了单分散和多分散的颗粒。在本文中,仅介绍了与流体相和分散相的各种统计模型的评估相关的结果。

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