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首页> 外文期刊>International Journal of Multiphase Flow >Grid-averaged Lagrangian LES model for multiphase turbulent flow
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Grid-averaged Lagrangian LES model for multiphase turbulent flow

机译:网格平均的拉格朗日LES模型用于多相湍流

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摘要

A grid-averaged Lagrangian (GAL) model for dispersed particle motion in multiphase turbulent flow is presented to provide a large eddy simulation (LES) model for multiphase turbulent flow in which a quite large number of particles are involved. The GAL model is based on an averaging operation for a Lagrangian-type equation of motion of a particle over a computational grid volume and a procedure of reallocation of a dispersed particle cloud with its centroid movement to each grid. The model is therefore a mixed Eulerian-Lagrangian model which can effectively reduce computational time compared with existing Lagrangian-type models, without losing the advantage of Lagrangian-type models that they can properly describe the dynamical evolution of particles. Since the GAL model adopts the grid-volume averaging operation it can easily provide an effective SGS model for LES modeling of multiphase turbulent flow. The validity of the multiphase LES model developed, which is named the GAL-LES model, is confirmed through its application to a particle plume, in which the present model is found to simulate large-eddy motion usually observed in a jet and plume, and to give good agreements with experimental data.
机译:提出了一种用于多相湍流中分散颗粒运动的网格平均拉格朗日(GAL)模型,以提供涉及大量颗粒的多相湍流大涡模拟(LES)模型。 GAL模型基于粒子在计算网格上的运动的拉格朗日型运动方程的平均运算以及基于质心向每个网格移动的分散粒子云的重新分配过程。因此,该模型是混合的Eulerian-Lagrangian模型,与现有的Lagrangian类型的模型相比,可以有效地减少计算时间,而不会失去Lagrangian类型的模型的优势,即它们可以正确描述粒子的动态演化。由于GAL模型采用网格体积平均运算,因此可以轻松地为多相湍流LES建模提供有效的SGS模型。通过将其应用于颗粒羽流,证实了所开发的多相LES模型(称为GAL-LES模型)的有效性,其中发现该模型模拟了通常在喷射流和羽流中观察到的大涡运动,并且与实验数据达成良好协议。

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