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Optimizing the Placement of Low Impact Development in an Urban Watershed

机译:优化城市流域低影响开发的位置

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An increase in urbanization adversely impacts the health of watersheds and receiving water bodies, causing increased peak flows, runoff volumes, velocities and erosion along the banks of a stream. Low Impact Development (LID) methods are strategies which are used to mitigate the impacts of urbanization by reducing runoff at the source and restore the natural hydrologic flow regime. Rainwater harvesting systems, permeable pavements, and green roofs are common LID techniques used to mitigate runoff generated from rooftops and parking lots. As the effectiveness of a LID strategy is determined by both the infiltration capabilities of alternative technologies and their placement within the watershed, this study optimizes the allocation of LID in a watershed to minimize the impact on the natural hydrologic flow regime, subject to an allowable cost. The hydrologic impacts of LID strategies are simulated using hydrologic and hydraulic models and are evaluated based on the peak flow. A genetic algorithm is coupled with the simulation models and applied for an illustrative watershed, located on the Texas A&M University campus, to identify the tradeoff between hydrologic impacts and implement costs of LID strategies.
机译:城市化的加剧对流域和接收水体的健康产生不利影响,导致峰值流量,径流量,流速和沿河两岸的侵蚀增加。低影响开发(LID)方法是用于通过减少源头径流和恢复自然水文流动状况来减轻城市化影响的策略。雨水收集系统,可渗透的人行道和绿色屋顶是常用的LID技术,用于减轻屋顶和停车场产生的径流。由于LID策略的有效性取决于替代技术的渗透能力及其在流域中的位置,因此本研究优化了LID在流域中的分配,以最大程度地降低对自然水文流态的影响,但要考虑允许的成本。 LID策略的水文影响使用水文和水力模型进行模拟,并基于峰值流量进行评估。遗传算法与仿真模型相结合,并应用于位于德克萨斯州A&M大学校园内的说明性分水岭,以识别水文影响与LID策略成本之间的权衡。

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