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Determining the Optimal BMP Arrangement under Current and Future Climate Regimes: Case Study

机译:确定当前和未来气候条件下的最佳BMP安排:案例研究

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As watersheds are urbanized, the amount of impervious surfaces will be increased. As such, water infiltration will be reduced, and the volume of surface runoff will be increased. By retaining stormwater, best management practices (BMPs) are used to mitigate the hydrologic effects of urbanization. Using the Ludlow watershed in northern Kentucky as a case study, the main objective of this paper was to identify the most cost-effective arrangement of BMPs in reducing surface runoff. A simulation program was employed to model the hydrologic conditions in the Ludlow watershed under the current and future climate conditions and to identify the most cost-effective BMP arrangement. The results show that the simulation program is an effective tool in simulating a small watershed. Indeed, BMPs are instrumental in reducing surface runoff even when the future climate becomes drier. The most cost-effective BMP arrangement is to install two infiltration trenches and one bioretention in the watershed. These findings can be useful in watershed management in areas with similar hydroclimatic conditions. (C) 2017 American Society of Civil Engineers.
机译:随着集水区的城市化,不透水面的数量将增加。这样,将减少水的渗透,并增加地表径流量。通过保留雨水,可以使用最佳管理实践(BMP)来减轻城市化的水文影响。以肯塔基州北部的Ludlow分水岭为例,本文的主要目的是确定在降低地表径流量方面最具成本效益的BMP布置。使用模拟程序对当前和将来的气候条件下的拉德洛流域的水文条件进行建模,并确定最具成本效益的BMP安排。结果表明,该仿真程序是模拟小流域的有效工具。的确,即使未来的气候变得更干燥,BMP仍然有助于减少地表径流。最具成本效益的BMP安排是在流域中安装两个渗透沟和一个生物保留区。这些发现可在类似水文气候条件的地区进行流域管理中有用。 (C)2017年美国土木工程师学会。

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