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A Comparative Study of Models for Heat Transfer in Bidisperse Gas-Solid Systems via CFD-DEM Simulations

机译:基于CFD-DEM模拟的双分散气固体系传热模型比较研究

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In this study, flow and heat transfers in bidisperse gas-solid systems were numerically investigated using the computational fluid dynamics-discrete element method (CFD-DEM). Three different models to close the gas-solid heat transfer coefficient for each species of bidisperse systems were compared in the simulations. The effect of the particle diameter ratio and particle number ratio between large and small particles on the particle mean temperature and temperature distribution of each species were systematically investigated. The simulation results show that differences in the particle mean temperature and temperature distribution profiles exist among the three heat transfer models at a higher particle number ratio. The differences between the effects of three heat transfer models on heat transfer properties in bidisperse systems with particle diameter ratios of up to 4 are marginal when the particle number ratio between small and large particles is 1.
机译:本研究采用计算流体动力学-离散元法(CFD-DEM)对双分散气固体系中的流动和传热进行了数值研究。在模拟中比较了三种不同的模型,以关闭每种双分散系统的气固传热系数。系统研究了粒径比和粒数比对各物种颗粒平均温度和温度分布的影响。仿真结果表明,在较高的粒数比下,3种传热模型的颗粒平均温度和温度分布曲线存在差异。当小颗粒和大颗粒之间的粒数比为1时,三种传热模型对粒径比高达4的双分散系统中传热性能的影响之间的差异很小。

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