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首页> 外文期刊>Journal of the American Water Resources Association >Coupling PCSWMM and WASP to Evaluate Green Stormwater Infrastructure Impacts to Storm Sediment Loads in an Urban Watershed
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Coupling PCSWMM and WASP to Evaluate Green Stormwater Infrastructure Impacts to Storm Sediment Loads in an Urban Watershed

机译:耦合PCSWMM和WASP以评估绿色雨水基础设施对城市流域中的风暴沉积物负荷的影响

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摘要

We coupled rainfall-runoff and instream water quality models to evaluate total suspended solids (TSS) in Wissahickon Creek, a mid-sized urban stream near Philadelphia, Pennsylvania. Using stormwater runoff and instream field data, we calibrated the model at a subdaily scale and focused on storm responses. We demonstrate that treating event mean concentrations as a calibration parameter rather than a fixed input can substantially improve model performance. Urban stormwater TSS concentrations vary widely in time and space and are difficult to represent simply. Suspended and deposited sediment pose independent stressors to stream biota and model results suggest that both currently impair stream health in Wissahickon Creek. Retrofitting existing detention basins to prioritize infiltration reduced instream TSS loads by 20%, suggesting that infiltration mitigates sediment more effectively than detention. Infiltrating stormwater from 30% of the watershed reduced instream TSS loads by 47% and cut the frequency of TSS exceeding 100 mg/L by half. Settled loads and the frequency of high TSS values were reduced by a smaller fraction than suspended loads and duration at high TSS values. A widely distributed network of infiltration-focused projects is an effective stormwater management strategy to mitigate sediment stress. Coupling rainfall-runoff and water quality models is an important way to integrate watershed-wide impacts and evaluate how management directly affects urban stream health.
机译:我们加上了降雨 - 径流和仪器水质模型,以评估Wissahickon Creek的总悬浮固体(TSS),位于Philadelphia,宾夕法尼亚州费城附近的中型城市。使用雨水径流和仪器中的现场数据,我们以逐个规模校准模型,并专注于风暴应答。我们证明将事件意味着作为校准参数而不是固定输入可以显着提高模型性能。城市雨水TSS浓度在时间和空间中差异很大,并且很难仅仅代表。悬浮和沉积的沉积物姿势独立的压力源流入Biota和模型结果表明,目前在Wissahickon Creek的流动健康损失。改造现有拘留盆地优先渗透渗透减少20%的仪器,表明渗透会使沉积物更有效地超出拘留。从流域的30%渗透雨水减少了47%,减少了超过100 mg / L的TS的频率。沉降的载荷和高TSS值的频率比悬浮的负载和高TSS值下的持续时间减少了较小的部分。一种广泛分布的渗透网络网络是一种有效的雨水管理策略,以减轻沉积物压力。耦合降雨 - 径流和水质模型是整合流域的影响,评价管理的直接影响城市流健康的重要途径。

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