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TIME-DEPENDENT SIMULATION OF A SWIRLING TWO PHASE FLOW USING AN ANISOTROPIC TURBULENT DISPERSION MODEL

机译:使用各向异性湍流分散模型的旋转两相流动的时间依赖模拟

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Time-dependent simulations of a particle-laden swirl flow in a pipe expansion based on the Euler-Lagrange approach are presented. Two equation and Reynolds Stress Models were used in the calculation of turbulent quantities in the continuous phase. Additional attention was payed to the influence of particle dispersion. The instantaneous fluid velocities seen by the particles was reconstructed by different dispersion models. To come to a time dependant solution for the Euler-Lagrange approach, a quasi-unsteady approach is taken. This results in a calculational scheme where one Eulerian time-step is divided in a number of Lagrangian steps. Particle source term are sampled which represent the influence of the disperse phase on the flow field. which call for additional coupling within one Eulerian time step. The effect of inter-particle collisions on the movement of the disperse phase is accounted for using a stochastic inter-particle collision model. Special interest of this study was the formation of dust ropes which are observed in such flows.
机译:介绍了基于欧拉拉格兰朗法方法的管膨胀中的粒子升降旋流的时间依赖模拟。在连续相中的湍流量计算中使用两个方程和雷诺应力模型。额外的注意力被支付给粒子分散的影响。由颗粒看到的瞬时液体速度由不同的分散模型重建。要达到欧拉拉格朗法兰方法的时间依赖解决方案,采取了一种准不稳定的方法。这导致一种计算方案,其中一个欧拉时间步骤在多个拉格朗日步骤中划分。采样粒子源术语,其代表流场对分散相的影响。其中呼叫在一个欧拉时间步骤中进行额外的耦合。颗粒间碰撞对使用随机间颗粒碰撞模型的分散相运动的影响。本研究的特殊兴趣是形成在这种流动中观察到的灰尘绳索。

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