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A risk assessment tool for contaminated sites in low-permeability fractured media

机译:低渗透压裂介质中污染场地的风险评估工具

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摘要

A risk assessment tool for contaminated sites in low-permeability fractured media is developed, based on simple transient and steady-state analytical solutions. The discrete fracture (DF) tool, which explicitly accounts for the transport along fractures, covers different source geometries and history (including secondary sources) and can be applied to a wide range of compounds. The tool successfully simulates published data from short duration column and field experiments. The use for risk assessment is illustrated by three typical risk assessment case studies, involving pesticides, chlorinated solvents, benzene and MTBE. The model is compared with field data and with results from a simpler approach based on an Equivalent Porous Media (EPM). Risk assessment conclusions of the DF and EPM approaches are very different due to the early breakthrough, long term tailing, and lower attenuation due to degradation associated with fractured media. While the DF tool simulates the field data, it is difficult to conclude that the DF model is superior to an EPM model because of a lack of long term monitoring data. However, better agreement with existing field data by the DF model using observed physical fracture parameters favors the use of this model over the EPM model for risk assessments.
机译:基于简单的瞬态和稳态分析解决方案,开发了一种针对低渗透性裂缝性介质中污染场地的风险评估工具。离散裂缝(DF)工具明确说明了沿裂缝的运移情况,涵盖了不同的烃源几何形状和历史记录(包括次生烃源),可应用于多种化合物。该工具成功地模拟了短时间色谱柱和现场实验中发布的数据。通过三个典型的风险评估案例研究说明了风险评估的用途,其中涉及农药,氯化溶剂,苯和MTBE。将该模型与现场数据进行比较,并与基于等效多孔介质(EPM)的简单方法得出的结果进行比较。 DF和EPM方法的风险评估结论由于早期突破,长期拖尾以及由于与破裂介质相关的退化而导致的衰减较低而存在很大差异。尽管DF工具模拟了现场数据,但由于缺乏长期的监测数据,很难断定DF模型优于EPM模型。但是,DF模型使用观察到的物理裂缝参数与现有现场数据更好地达成了一致,相比于EPM模型,该模型更适合用于风险评估。

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