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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Parametric study for MP-PIC simulation of bubbling fluidized beds with Geldart A particles
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Parametric study for MP-PIC simulation of bubbling fluidized beds with Geldart A particles

机译:Geldart颗粒的泡沫流化床MP-PIC模拟的参数研究

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This is a parametric study for multi-phase particle in cell (MP-PIC) simulation of bubbling fluidized beds with Geldart A particles using the open source MFIX program. The main parameters have been studied including drag models, grid resolution and number of particles per parcel (PPP). And the calculated axial/radial solid distribution and bed height are compared with the experimental data for validation. It is shown that the drag model can significantly affect the calculation results of bubbling fluidized bed with Geldart A particles. Specifically, the Energy Minimization Multi-scale (EMMS) bubbling drag model can predict right bubbling phenomenon and also improve the accuracy compared to the homogeneous drag model. Bubble analysis shows that there exists a stable average bubble diameter when the bed becomes stable. The average bubble circularities are about 0.5 for the two bubbling bed studied in this work, even though they have different average bubble diameter. Parameter analysis shows that the accuracy of the calculated results improves with decreasing grid size or PPP. There exists a threshold value for grid size/PPP, below which, grid/PPP independent result can be obtained. The PPP plays the similar role to grid resolution in MP-PIC simulation. (C) 2018 Elsevier B.V. All rights reserved.
机译:这是使用开源MFIX程序的Geldart颗粒的鼓泡流化床的电池(MP-PIC)模拟中的多相粒子的参数研究。已经研究了主要参数,包括拖动模型,网格分辨率和每个包裹的粒子数(PPP)。将计算出的轴向/径向固体分布和床高度与实验数据进行比较。结果表明,拖曳模型可以显着影响用Geldart颗粒鼓泡流化床的计算结果。具体地,能量最小化多尺度(EMM)鼓泡拖曳模型可以预测右鼓泡现象,并且还与均匀阻力模型相比提高了准确性。泡沫分析表明,当床变得稳定时存在稳定的平均气泡直径。对于在这项工作中研究的两个冒泡床中的平均气泡圆形是约0.5,即使它们具有不同的平均气泡直径。参数分析表明,计算结果的准确性随着网格尺寸或PPP的降低而改善。网格尺寸/ PPP存在阈值,下面可以获得网格/ PPP独立结果。 PPP在MP-PIC仿真中对网格分辨率进行了类似的作用。 (c)2018 Elsevier B.v.保留所有权利。

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