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Modeling dense-colloid and virus cotransport in three-dimensional porous media

机译:在三维多孔介质中模拟致密胶体和病毒的共转运

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A three-dimensional numerical model was developed to investigate the simultaneous transport (cotransport) of dense colloids and viruses in homogeneous, water saturated, porous media with horizontal uniform flow. The dense colloids are assumed to exist in two different phases: suspended in the aqueous phase, and attached reversibly and/or irreversibly onto the solid matrix. The viruses are assumed to exist in four different phases: suspended in aqueous phase, attached onto the solid matrix, attached onto suspended colloids, and attached onto colloids already attached onto the solid matrix. The viruses in each of the four phases are assumed to undergo inactivation with different rates. Moreover, the suspended dense colloids as well as viruses attached onto suspended dense colloids are assumed to exhibit a "restricted" settling velocity as a consequence of the gravitational force; whereas, viruses due to their small sizes and densities are assumed to have negligible "restricted" settling velocity. The governing differential equations were solved numerically with the finite difference schemes, implicitly or explicitly implemented. Model simulations have shown that the presence of dense colloid particles can either enhance or hinder the horizontal transport of viruses, but also can increase the vertical migration of viruses. (C) 2015 Elsevier B.V. All rights reserved.
机译:建立了三维数值模型,以研究致密胶体和病毒在水平均匀流动的均质,水饱和的多孔介质中的同时运输(共运输)。假定稠密的胶体存在于两个不同的相中:悬浮在水相中,并且可逆和/或不可逆地附着在固体基质上。假定病毒以四个不同的阶段存在:悬浮在水相中,附着在固体基质上,附着在悬浮的胶体上以及附着在已经附着在固体基质上的胶体上。假定四个阶段中每个阶段的病毒都以不同的速率灭活。而且,由于重力,悬浮的致密胶体以及附着在悬浮的致密胶体上的病毒被认为表现出“受限制的”沉降速度。相反,由于病毒的大小和密度小,它们的“受限”沉降速度可以忽略不计。控制微分方程通过有限差分方案用数值方式求解,可以隐式地或显式地实现。模型仿真表明,致密的胶体颗粒的存在可以增强或阻碍病毒的水平运输,但也可以增加病毒的垂直迁移。 (C)2015 Elsevier B.V.保留所有权利。

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