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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Investigation of the Pressure Drop Across Packed Beds of Spherical Beads: Comparison of Empirical Models With Pore-Level Computational Fluid Dynamics Simulations
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Investigation of the Pressure Drop Across Packed Beds of Spherical Beads: Comparison of Empirical Models With Pore-Level Computational Fluid Dynamics Simulations

机译:调查球形珠子堆积床的压力下降:孔径计算流体动力学模拟的实证模型比较

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摘要

This study uses novel methods, combining discrete element method (DEM) simulations for packing and computational fluid dynamics (CFD) modeling of fluid flow, to simulate the pressure drop across rigid, randomly packed beds of spheres ranging from 1 to 3mm in diameter, with porosities between 0.34 and 0.45. This modeling approach enables the combined effect of void fraction and particle size to be studied in more depth than that has been previously possible and is used to give insight into the ability of the well-established Ergun equation to predict the pressure drop behavior. The resulting predictions for pressure drop as a function of superficial velocity were processed to yield coefficients alpha and beta in the Ergun equation and were found to be in keeping with equivalent data in the literature. Although the scatter in alpha with structural variations was very small, the scatter in beta was large (+/- 20%), leading to inaccuracies when used to predict pressure drop data at velocities beyond the Darcy regime. Evaluation of the packed particle structures showed that regions of poor packing, in samples with high porosity and large particle sizes, lead to lower beta values. The findings bring strong support to the belief that a generalized model, such as that by Ergun, cannot yield a unique value for beta, even for identical spheres.
机译:本研究采用新颖的方法,组合离散元素方法(DEM)模拟用于填充和计算流体动力学(CFD)流体流动的建模,以模拟刚性的刚性,随机包装床的直径为1至3mm的压力下降,孔隙率为0.34和0.45。该建模方法能够更深度地研究空隙率分数和粒度的组合效果,而不是预先实现的,并且用于洞察熟悉的ERGUN方程来预测压降行为的能力。作为浅表速度作为静态速度函数的压降预测以屈服于ERGUN方程中的系数α和β,并被发现与文献中的等同数据保持在。虽然具有结构变异的α在α中的散射非常小,但β的散射大(+/- 20%),导致用于预测Darcy政权的速度下的压力下降数据时的不准确性。填充颗粒结构的评价显示,在具有高孔隙率和大颗粒尺寸的样品中,填充差的区域导致β值降低。调查结果使得强大的支持对普通模型(例如Ergun)的相信,即使对于相同的球体,也不能产生独特的β的价值。

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