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首页> 外文期刊>Journal of Hydrology >The feedback interaction between biomass accumulation and heterogeneous flow in porous media: Effect of shear stresses
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The feedback interaction between biomass accumulation and heterogeneous flow in porous media: Effect of shear stresses

机译:多孔介质中生物质累积与异质流动的反馈相互作用:剪切应力的影响

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Bioclogging, resulting from excess biomass growth in porous media, can influence flow, solute transport, and biogeochemical reactions in natural and remedial subsurface systems. In this study, we investigated bioclogging in heterogeneous porous media using a reactive-transport model, with a focus on the effect of shear stresses on the spatial changes of biomass accumulation and hydraulic properties. The results show that, when the shearing-induced detachment was negligible, the accumulation of biomass was mainly controlled by substrate transport. Newly generated biomass was then accumulated in the regions with high hydraulic conductivity due to the fast substrate supply, resulting in a homogenization of hydraulic conductivity. When the shearing-induced detachment was significant, newly generated biomass was less accumulated in the flow paths with higher hydraulic conductivity, and more in the pore regions with relatively low hydraulic conductivity, resulting in the increase of heterogeneity in hydraulic conductivity. The results were then used to establish a macroscopic correlation between the reduction of porosity and the reduction of hydraulic conductivity as a result of biomass growth, and to identify factors controlling such a correlation. A correlation was established and was found to be significantly affected by flow velocity and shearing-induced biomass detachment. Overall, this study indicated that flow-induced shearing is important in understanding bioclogging and its effect on hydraulic conductivity and water flow in porous media.
机译:生物测井是由多孔介质中过量的生物量增长引起的,它可以影响自然和补救性地下系统中的流动、溶质运移和生物地球化学反应。在这项研究中,我们使用反应传输模型研究了非均质多孔介质中的生物测井,重点研究了剪切应力对生物量积累和水力特性空间变化的影响。结果表明,当剪切诱导的剥离可以忽略时,生物量的积累主要受基质迁移的控制。由于快速的基质供应,新产生的生物量在高导水率区域积累,导致导水率均匀化。当剪切诱导的剥离显著时,新生成的生物量在水力传导率较高的流道中积累较少,而在水力传导率相对较低的孔隙区域积累较多,导致水力传导率的非均质性增加。然后,利用这些结果建立孔隙度降低与生物量增长导致的水力传导率降低之间的宏观相关性,并确定控制这种相关性的因素。建立了相关关系,发现流速和剪切诱导的生物量分离对其有显著影响。总的来说,这项研究表明,流致剪切对于理解生物测井及其对多孔介质中的水力传导率和水流的影响非常重要。

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