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Modeling a basin-wide extrapolation of stormwater management activities: A case study of the Lake Tahoe clarity TMDL implementation plan for developed areas

机译:模拟盆地雨水管理活动外推 - 以发达地区湖泊湖澄清型TMDL实施计划为例

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Lake Tahoe is a designated Outstanding National Resource Waterbody. However, lake clarity has dropped at a rate of 9 inches per year since the late 1960s, with ultrafine sediment and nutrient driven algae production as the primary stressors. About 70% of the total fine sediment particles are estimated to come from developed areas, which make up 10% of this largely rural watershed. With more than $1.5 billion estimated as the cost to restore lake clarity, a premium has been placed on developing informative decision support analyses. A detailed watershed model was developed to represent the unique orography and hydrology of the Lake Tahoe Basin, predict loads by land use source, and calculate TMDLs allocations. This paper highlights a methodology that informs the watershed model regarding pollutant load reductions achieved from implementation of Best Management Practices (BMPs) under different physiographical settings for developed land in the Lake Tahoe Basin.
机译:湖泊湖是一个指定的优秀国家资源水体。然而,自20世纪60年代后期以来,湖清晰度以每年9英寸的速度下降,具有超细沉积物和营养驱动的藻类作为主要压力源。估计大约70%的总细沉积物颗粒来自发达地区,这占该农村流域的10%。估计超过15亿美元的恢复湖清晰度的成本,一项溢价已经促进了发展信息决策支持分析。开发了一个详细的流域模型,以代表湖泊池湖的独特形态和水文,通过土地利用来源预测负载,并计算TMDLS分配。本文突出了一种方法论,该方法可以通过在湖泊湖湖湖中发达的土地的不同地理图中实现最佳管理实践(BMP)的实施,以便在实施最佳管理实践(BMP)下实现的污染物减少。

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