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首页> 外文期刊>Journal of Contaminant Hydrology >Stochastic analytical modeling of the biodegradation of steady plumes
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Stochastic analytical modeling of the biodegradation of steady plumes

机译:稳定羽流生物降解的随机分析模型

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We present a stochastic analytical framework to assess the contaminant concentration of a steady plume undergoing biodegradation. The method is focused on heterogeneous formations, and it embeds both fringe and core degradation. The Lagrangian concentration approach of Fiori (2001) was employed, which is suited for describing the interplay between the large scale advection caused by heterogeneity and the local dispersion processes. The principal scope of the model is to provide a relatively simple tool for a quick assessment of the contamination level in aquifers, as function of a few relevant, physically based dimensionless parameters. The solution of the analytical model is relatively simple and generalizes previous approaches developed for homogeneous formations. It is found that heterogeneity generally enhances mixing and degradation; in fact, the plume shear and distortion operated by the complex, heterogeneous velocity field facilitates local dispersion in diluting the contaminant and mixing it with the electron acceptor. The decay of the electron donor concentration, and so the plume length, is proportional to the transverse pore-scale dispersivity, which is indeed the parameter ruling mixing and hence degradation. While the theoretical plume length is controlled by the fringe processes, the core degradation may determine a significant decay of concentration along the mean flow direction, thus affecting the length of the plume. The method is applied to the crude oil contamination event at the Bemijdi site, Minnesota (USA).
机译:我们提出了一个随机的分析框架,以评估经历生物降解的稳定羽流的污染物浓度。该方法着眼于非均质地层,并嵌入了边缘和岩心退化。采用了Fiori的Lagrangian集中法(2001年),该方法适合于描述由非均质性引起的大规模对流与局部扩散过程之间的相互作用。该模型的主要范围是根据一些相关的基于物理的无量纲参数提供一个相对简单的工具,用于快速评估含水层中的污染水平。分析模型的解决方案相对简单,并且概括了为均质地层开发的先前方法。发现异质性通常会增强混合和降解。实际上,复杂的,非均质的速度场所产生的羽流剪切和变形会促进局部分散,从而稀释污染物并将其与电子受体混合。电子给体浓度的衰减以及羽状流的长度与横向孔尺度的分散度成正比,这实际上是决定混合以及因此降解的参数。尽管理论羽流长度由边缘过程控制,但岩心退化可能会确定浓度沿平均流向的显着衰减,从而影响羽流的长度。该方法适用于美国明尼苏达州Bemijdi站点的原油污染事件。

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