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A Methodology for Assessing the Potential Environmental Impact of Failure of Leachate-Retaining Earthen Dams

机译:渗滤液固结土坝破坏对环境潜在影响的评估方法

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We describe herein a useful model for assessing the environmental impact of the breakage of earthen dams used to retain leachate fluids. To create this model, we analyzed three parameters: (1) the characteristics of both the earthen dam and the leachate; (2) the behavior of the leachate cascade resulting from breakage of the dam; and (3) the environmental effect of the resulting pollution. To accomplish this, we first analyzed the failure of earthen dams for leachate according to the Dam Break Inundation Analysis methodology, which provides the characteristics of the leachate cascade or avalanche resulting from the dam breakage. We then used data for different earthen dams for leachates and calculated the volume of leachate that would reach each point the leachate-flow bed downstream of the dam to generate a graph identifying areas at risk from the leachate cascade. As a third step, we calculated the pollutant charge of leachate, and lastly identified and assessed the environmental factors (EFs) within the risk area. Through these steps we formulated an equation for the environmental risk index (ERI EF), which quantifies the potential environmental impact of the rupture of an earthen dam for leachate on the area surrounding such a dam, and which has a value that ranges from 0 to 1. In order to validate this methodology, we applied the ERI EF equation to nine man-made earthen dams for leachates. All nine are considered safe facilities in having had no accidents in the years since their construction. All have ERI EF values below 0.12, indicating that this value can serve as an appropriate guide to the environmental impact of the rupture of earthen dams that retain leachates.
机译:我们在本文中描述了一种有用的模型,用于评估用于保留渗滤液的土坝破裂对环境的影响。为了创建该模型,我们分析了三个参数:(1)土坝和渗滤液的特性; (2)由于大坝破坏而引起的渗滤液级联行为; (3)由此产生的污染对环境的影响。为了实现这一目标,我们首先根据大坝破坏淹没分析方法分析了渗滤液的土坝破坏,该方法提供了由大坝破坏引起的渗滤液级联或雪崩的特征。然后,我们使用了渗滤液不同土坝的数据,并计算了到达渗流下游渗滤液流床每个点的渗滤液量,从而生成了一个图形,该图确定了渗滤液级联的危险区域。第三步,我们计算了渗滤液的污染物排放量,最后确定并评估了风险区内的环境因子(EFs)。通过这些步骤,我们为环境风险指数(ERI EF)制定了一个方程式,该方程式量化了土坝破裂对渗滤液在该水坝周围区域的潜在环境影响,其值范围为0至1.为了验证该方法,我们将ERI EF方程应用于渗滤液的9个人造土坝。自从建造以来,这九年中没有发生任何事故,被认为是安全的设施。它们的ERI EF值均低于0.12,表明该值可作为保留渗滤液的土坝破裂对环境影响的适当指南。

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