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Statistical Eulerian diffusion approach of four-way-coupled multiphase systems

机译:四向耦合多相系统的统计欧拉扩散方法

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Volume-fraction weighted and Reynolds averaged momentum transport equations are solved in an Euler/Euler approach to simulate numerically the turbulent, dispersed two-phase flow in a two-dimensional channel and a three-dimensional conic diffuser flow. Particular attention is given to the modelling of turbulent diffusion and particle wall interaction, assuming local equilibrium but introducing individual terms for particle/fluid drag interaction, particle collisions and trajectory crossings. These influences have been quantified in terms of partial viscosities, a restitution power and a turbulence structure parameter. Boussinesq approximations have been used for each phase and their interaction, whose formulation was provided in the framework of the eddy-viscosity modelling concept.
机译:使用Euler / Euler方法求解体积分数加权和雷诺平均动量输运方程,以数值模拟二维通道中的湍流,分散的两相流和三维圆锥形扩散器流。特别关注湍流扩散和颗粒壁相互作用的建模,假设局部平衡,但引入了颗粒/流体阻力相互作用,颗粒碰撞和轨迹交叉的单独术语。这些影响已通过部分粘度,恢复力和湍流结构参数进行了量化。 Boussinesq近似已用于每个阶段及其相互作用,其公式化是在涡粘性模型概念的框架中提供的。

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