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Application of the SUSTAIN model to a watershed-scale case for water quality management

机译:SUSTAIN模型在流域尺度水质管理案例中的应用

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Low impact development (LID) has been widely accepted at lot-scale design but less so for watershed-scale cases because of the absence of appropriate assessment tools. The USEPA developed the System for Urban Stormwater Treatment and Analysis Integration Model (SUSTAIN) to evaluate the performance of LID practices at different spatial scales; however, the application of this model has been limited relative to the large number of LID cases. In this study, the SUSTAIN model was applied to a Taiwanese watershed to determine the feasibility of applying the model to international cases. Model calibration and verification were performed, and different types of LID facilities were evaluated. The results showed that infiltration was the dominant contribution to LID performance and that the plant intercept had a minor effect on the treatment. The number of units also influenced the overall performance. Increasing the number of LID units further decreased the pollution. The results of a watershed-scale simulation were used to rank the primary areas for nonpoint source pollution and to identify effective LID practices.
机译:低影响力开发(LID)在批量设计中已被广泛接受,但由于缺乏适当的评估工具,因此在分水岭规模的情况下较少被接受。美国环保局开发了城市雨水处理和分析集成模型系统(SUSTAIN),以评估LID实践在不同空间尺度上的表现;但是,相对于大量的LID案例,该模型的应用受到了限制。在这项研究中,将SUSTAIN模型应用于台湾的一个分水岭,以确定将该模型应用于国际案例的可行性。进行了模型校准和验证,并评估了不同类型的LID设施。结果表明,渗透是影响LID性能的主要因素,植物截留对处理的影响较小。单元的数量也影响了整体性能。 LID单元数量的增加进一步减少了污染。分水岭规模模拟的结果用于对非点源污染的主要区域进行排名,并确定有效的LID做法。

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