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Numerical simulation of gas-particle flow in a single-side backward-facing step flow

机译:单面朝后步进流中气体颗粒流的数值模拟

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Particle-laden turbulent flow over a backward-facing step has been investigated by using large eddy simulation for the fluid phase while particle motion is traced by particle track model. Effects of both drag and gravitational forces on particle motion are considered. The simulation is carried out with the flow parameters and geometry of the test section is same as those in the experiment carried out by Fessler and Eaton (J. Fluid Mech. 314 (1999) 97), who measured the two-dimensional flow fields of both phases. Predicted statistical mean properties of the fluid phase with Reynolds number of 18,400 and particle phase with 70 μm copper spheres and 150 μm glass spheres respectively are in good agreement with the experimental results. Simulation also predicts detailed flow fields of both phases and their evolution. Further investigation has been carried out on the dispersion of particles with different Stokes numbers in the turbulent structure of the fluid field. Motion of glass spheres with diameters 2, 20, 50, 100 and 200 μ, respectively, introduced in the fluid field is simulated. The predicted patterns of instantaneous dispersion of particles reveal that the phenomenon of preferential concentration of particles occurs at a certain range of Stokes number. The effects of initial velocity slip between the two phases and the action of gravity on particle dispersion are also investigated.
机译:通过使用大涡流模拟流体相,同时通过粒子跟踪模型追踪粒子运动,研究了朝后步骤中充满粒子的湍流。考虑了阻力和重力对粒子运动的影响。使用测试部分的流动参数和几何形状进行模拟,与Fessler和Eaton(J. Fluid Mech。314(1999)97)进行的实验相同,他们测量了流体的二维流场。两个阶段。雷诺数分别为18,400的液相和70μm铜球和150μm玻璃球的颗粒相的统计平均性能与实验结果吻合良好。仿真还预测了两个阶段及其演变的详细流场。已经对具有不同斯托克斯数的粒子在流场的湍流结构中的分散性进行了进一步的研究。模拟了直径分别为2、20、50、100和200μ的玻璃球在流场中的运动。颗粒瞬时分散的预测模式表明,颗粒的优先集中现象在一定的斯托克斯数范围内发生。还研究了两相之间的初始速度滑移以及重力对颗粒分散的影响。

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