A Reconciliation of Packed Column Permeability Data: Column Permeability as a Function of Particle Porosity

H. Quinn
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引用次数: 16

Abstract

In his textbook teaching of packed bed permeability, Georges Guiochon uses mobile phase velocity as the fluid velocity term in his elaboration of the Darcy permeability equation. Although this velocity frame makes a lot of sense from a thermodynamic point of view, it is valid only with respect to permeability at a single theoretical boundary condition. In his more recent writings, however, Guiochon has departed from his long-standing mode of discussing permeability in terms of the Darcy equation and has embraced the well-known Kozeny-Blake equation. In this paper, his teaching pertaining to the constant in the Kozeny-Blake equation is examined and, as a result, a new correlation coefficient is identified and defined herein based on the velocity frame used in his teaching. This coefficient correlates pressure drop and fluid velocity as a function of particle porosity. We show that in their experimental protocols, Guiochon et al. have not adhered to a strict material balance of permeability which creates a mismatch of particle porosity and leads to erroneous conclusions regarding the value of the permeability coefficient in the Kozeny-Blake equation. By correcting the experimental data to properly reflect particle porosity we reconcile the experimental results of Guiochon and Giddings, resulting in a permeability reference chart which is presented here for the first time. This reference chart demonstrates that Guiochon’s experimental data, when properly normalized for particle porosity and other related discrepancies, corroborates the value of 267 for the constant in the Kozeny-Blake equation which was derived by Giddings in 1965.
填充柱渗透率数据的调和:柱渗透率作为颗粒孔隙度的函数
Georges Guiochon在讲授充填层渗透率的教科书中,在阐述达西渗透率方程时,使用了流动相速度作为流体速度项。虽然从热力学的角度来看,这个速度框架很有意义,但它只对渗透率在单一理论边界条件下有效。然而,在他最近的著作中,Guiochon抛弃了他长期以来用Darcy方程来讨论渗透率的模式,转而采用了著名的Kozeny-Blake方程。本文考察了他关于Kozeny-Blake方程常数的教学,并根据他的教学中使用的速度系,确定并定义了一个新的相关系数。该系数将压降和流体速度作为颗粒孔隙度的函数联系起来。我们表明,在他们的实验方案中,Guiochon等人没有遵守严格的渗透率物质平衡,这造成了颗粒孔隙度的不匹配,并导致关于Kozeny-Blake方程中渗透率系数值的错误结论。通过对实验数据进行校正,使之更准确地反映颗粒孔隙度,并与Guiochon和Giddings的实验结果进行了协调,得到了渗透率参考图。该参考图表表明,Guiochon的实验数据,在适当地对颗粒孔隙度和其他相关差异进行归一化后,证实了Giddings在1965年推导的Kozeny-Blake方程中的常数为267。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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