多孔介质
无量纲量
扩散
机械
布朗运动
航程(航空)
化学
粒子(生态学)
热力学
过滤(数学)
统计物理学
物理
多孔性
材料科学
数学
统计
海洋学
地质学
复合材料
有机化学
作者
Nathalie Tufenkji,Menachem Elimelech
摘要
A new equation for predicting the single-collector contact efficiency (η0) in physicochemical particle filtration in saturated porous media is presented. The correlation equation is developed assuming that the overall single-collector efficiency can be calculated as the sum of the contributions of the individual transport mechanismsBrownian diffusion, interception, and gravitational sedimentation. To obtain the correlation equation, the dimensionless parameters governing particle deposition are regressed against the theoretical value of the single-collector efficiency over a broad range of parameter values. Rigorous numerical solution of the convective−diffusion equation with hydrodynamic interactions and universal van der Waals attractive forces fully incorporated provided the theoretical single-collector efficiencies. The resulting equation overcomes the limitations of current approaches and shows remarkable agreement with exact theoretical predictions of the single-collector efficiency over a wide range of conditions commonly encountered in natural and engineered aquatic systems. Furthermore, experimental data are in much closer agreement with predictions based on the new correlation equation compared to other available expressions.
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