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首页> 外文期刊>Ground Water Monitoring & Remediation >Cost-Optimal Contaminant Plume Management with a Combination of Pump-and-Treat and Physical Barrier Systems
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Cost-Optimal Contaminant Plume Management with a Combination of Pump-and-Treat and Physical Barrier Systems

机译:结合泵处理系统和物理屏障系统的成本优化污染物羽流管理

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摘要

The economic potential of combining hydraulic barriers and pump-and-treat systems to manage contaminant plumes is investigated by means of a comparative cost analysis. The analysis is based on a preceding study on the hydraulic performance of barrier-supported and conventional pump-and-treat systems, which revealed the efficiency of accurately positioned barriers in reducing pumping rates for contaminant plume capture. In the present paper, we examine whether the application of physical barriers like slurry walls or sheet piles also leads to economic benefits, i.e., whether the reduction of the operational costs outweighs the capital costs associated with the construction of the barriers. An economic model is presented that quantifies remediation costs by the use of cost functions relating costs to site-specific and system-specific parameters. The model is applied to a hypothetical remediation scenario. The results clearly demonstrate that physical barriers may yield significant savings in the total costs, particularly if unit costs for on-site treatment are high. Furthermore, as barriers tend to reduce the uncertainty about the pumping rate required to capture a plume, they smooth the trade-off curves between total remediation costs and system reliability.
机译:通过比较成本分析,研究了将水力屏障和泵处理系统结合起来管理污染物羽流的经济潜力。该分析基于先前对障碍物支撑和常规泵送和处理系统的水力性能的研究,该研究显示了精确定位的障碍物在降低泵送速率以捕集污染物羽流方面的效率。在本文中,我们研究了使用物理屏障(如泥浆墙或板桩)是否还会带来经济利益,即,运营成本的降低是否超过了与屏障建设相关的资本成本。提出了一种经济模型,该模型通过使用将成本与站点特定参数和系统特定参数相关的成本函数来量化修复成本。该模型适用于假设的修复方案。结果清楚地表明,物理障碍可以节省总成本,尤其是在现场治疗的单位成本较高的情况下。此外,由于障碍物往往会减少捕获烟羽所需的泵送速度的不确定性,因此它们会平滑总修复成本与系统可靠性之间的折衷曲线。

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