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Development of a numerical model for the hydrodynamics simulation of liquid-solid circulating fluidized beds

机译:液固循环流化床流体动力学模拟的数值模型的研制

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摘要

Due to extensive applications of the liquid-solid circulating fluidized beds (LSCFBs) in biochemical and petroleum industries, a detailed computational fluid dynamics (CFD) study is crucial to understand the flow characteristics in LSCFBs. In this paper, the hydrodynamics in LSCFBs is numerically investigated using the Eulerian-Eulerian two-phase model combined with the kinetic theory for the granular phase (KTGP). Key factors affecting the simulation results including the drag model, near wall treatment and boundary conditions are investigated, and the CFD model is validated by comparing the numerical results with the experimental data. Among the seven different drag models examined in this study, the adjusted Syamlal O'Brien drag model and the irregular particle drag model are found to provide the best numerical solutions for spherical and irregular particles, respectively. As for the three different near wall treatments tested, the Menter-Lechner near wall treatment is found to provide the best numerical predictions in the near wall region. (C) 2019 Published by Elsevier B.V.
机译:由于生化和石油工业中的液体固体循环流化床(LSCFB)的广泛应用,详细的计算流体动力学(CFD)研究对于了解LSCFB中的流动特性至关重要。本文使用欧拉 - 欧拉两相模型与粒状相(KTGP)的​​动力学理论相结合,数值研究了LSCFBS中的流体动力学。研究了影响包括阻力模型,靠近墙面处理和边界条件的模拟结果的关键因素,通过将数值结果与实验数据进行比较来验证CFD模型。在本研究中检查的七种不同的阻力模型中,发现调整后的Syamlal o'brien拖曳模型和不规则粒子阻力模型分别为球形和不规则颗粒提供最佳的数值解。至于测试的三种不同的墙面处理,发现靠近壁处理的导师 - lechner在靠近墙壁区域提供最佳数值预测。 (c)2019年由elestvier b.v发布。

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