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Sustainable Design of Urban Stormwater Drainage Systems by Implementing Detention Tank and LID Measures for Flooding Risk Control and Water Quality Management

机译:实施蓄水箱和LID措施进行洪水风险控制和水质管理的城市雨水排水系统可持续设计

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With the increasing emphasis and application of the flooding control and mitigation measures of detention tank (DT) and low impact development (LID) in urban stormwater drainage systems (USDSs), the complex drainage flow process and corresponding water quality issues have also aroused great of interests and attentions from researchers and practitioners. This paper contributes to study the urban flooding control and water quality management with the implementation of DTs and LIDs in the USDS. A many-objective optimization (MOO) based design framework and analysis method is developed for achieving four objectives of USDS design. A realistic USDS is adopted for the case study, in which the DTs and LIDs are implemented by this extended MOO-based design method to achieve the optimal result of flooding risk control and water quality improvement. The obtained results are further analyzed for the characteristics of flooding risk control and water quality component evolution in the USDS. The results and analysis demonstrate the effectiveness and applicability of the designed DTs and LIDs to mitigate the flooding risk and improve water quality in USDS.
机译:随着城市雨水排水系统(USDSs)中的蓄水箱(DT)和低影响开发(LID)的洪水控制和缓解措施的日益重视和应用,复杂的排水流过程和相应的水质问题也引起了人们的极大关注。研究人员和实践者的兴趣和关注。本文通过在USDS中使用DT和LID来研究城市防洪和水质管理。为实现USDS设计的四个目标,开发了一种基于多目标优化(MOO)的设计框架和分析方法。案例研究采用了现实的USDS,其中通过基于MOO的扩展设计方法来实现DT和LID,以实现洪水风险控制和水质改善的最佳结果。获得的结果将进一步分析USDS中的洪水风险控制和水质成分演变特征。结果和分析表明,设计的DT和LID可以减轻USDS中的洪水风险并改善水质,其有效性和适用性。

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