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首页> 外文期刊>Transport in Porous Media >Multiscale Model for Assessing Effect of Bacterial Growth on Intrinsic Permeability of Soil: Model Description
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Multiscale Model for Assessing Effect of Bacterial Growth on Intrinsic Permeability of Soil: Model Description

机译:评估细菌生长对土壤固有渗透性影响的多尺度模型:模型描述

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摘要

A multiscale model is proposed for assessing the impact of bacterial growth attached to soil particles on intrinsic permeability of soil. The model combines two modules. One of the modules solves the equations describing multiphase reaction-diffusion-transport model at the macroscopic [Representative Elementary Volume (REV)] scale, augmented with an equation for attached biomass growth. This module is used as an upscaling environment. The other module in the coupling set is a cellular automaton (CA) model for bacterial growth attached to soil particles. The coupling is achieved by having the CA module model bacterial growth at the pore level and integrating the result to provide information at the REV level. The details of the two modules, the links between them and an algorithm for simulation using the coupled model are described. The two modules are designed to work alternately till the end of a simulation period. The continuum module (reaction-diffusion-transport augmented with attached biomass growth equation) calculates the change in attached biomass. This is followed by the determination of a change in the states of cells in the CA module. Any change in the states necessitates a recalculation of permeability values to be used for the next time step of the continuum module. A companion paper gives results on using this coupled model to simulate a column experiment.
机译:提出了一种多尺度模型来评估附着在土壤颗粒上的细菌生长对土壤固有渗透性的影响。该模型结合了两个模块。其中一个模块解决了描述宏观[代表基本体积(REV)]尺度下的多相反应扩散扩散模型的方程,并增加了附着生物量的方程。该模块用作升级环境。耦合组中的另一个模块是细胞自动机(CA)模型,用于细菌附着在土壤颗粒上的生长。通过使CA模块对细菌在孔水平的生长进行建模,并整合结果以在REV水平提供信息,可以实现这种耦合。描述了两个模块的详细信息,它们之间的链接以及使用耦合模型进行仿真的算法。这两个模块被设计为可以交替工作,直到模拟期结束。连续模块(通过附加的生物量增长方程进行反应扩散扩散传输)计算了附加的生物量的变化。接下来,确定CA模块中单元状态的变化。状态的任何变化都需要重新计算渗透率值,以用于连续模块的下一个时间步。随附的论文给出了使用此耦合模型模拟色谱柱实验的结果。

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