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Probabilistic Hydrologic Model to Simulate Response of Urban Drainage System to Implementation of Low Impact Development Stormwater Practices

机译:概率水文模型模拟城市排水系统响应实现低影响发展雨水实践

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The article presents a method to study the changes of urban catchment runoff behavior from green roof implementation. The proposed method takes into account the thresholds in green roof response and abrupt changes in areal characteristics, which allows the method to correctly scale various types of green roofs, and ultimately other BMPs, for a range of storm characteristics and BMP implementation. We used the Illinois Urban Hydrologic model (IUHM) as a base model for urban sewer system, with the incorporation of a green roof model that was developed to simulate the major processes affecting the hydrologic response of green roofs. The modified IUHM model, herein named Combined IUHM-Green Roof Model (CIGM) was used to test green roof impact on hydrologic response at a catchment scale. Results indicate that the implementation of green roofs has a distinct effect on decreasing the volume and peak of urban storm water runoff and postponing the time to peak runoff. The volume and peak discharge reduction depends on the temporal distribution of rainfall as well as the volume of rainfall and green roof coverage.
机译:本文介绍了一种研究绿色屋顶实现的城市集水径流行为变化的方法。所提出的方法考虑了绿色屋顶响应的阈值和面积特征的突然变化,这使得该方法可以正确地缩放各种类型的绿色屋顶,并最终其他BMP,用于一系列风暴特性和BMP实现。我们将伊利诺伊州城市水文模型(IUHM)作为城市下水道系统的基础模型,并融入了一种开发的绿色屋顶模型,以模拟影响绿色屋顶水文反应的主要过程。修改的IUHM模型,这里命名为IUHM-Green屋顶模型(CIGM)用于测试在集水区的水文响应上的绿色屋顶影响。结果表明,绿色屋顶的实施对降低城市风暴水径流的数量和高峰,并推迟了峰值径流的时间。体积和峰值放电减少取决于降雨的时间分布以及降雨量和绿色屋顶覆盖量。

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