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Impacts of Stormwater Infiltration on Urban Watershed Hydrology and Water Quality: Spanaway Watershed-Scale Stormwater Management Plan

机译:雨水入渗对城市流域水文和水质的影响:Spanaway流域规模的雨水管理计划

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Pierce County (WA) developed the Spanaway watershed-scale stormwater management plan to meet MS4 permit requirements. Nearly all stormwater in the drainage area infdtrates and strong surface water and groundwater interaction plays an important role in stormwater planning. We built an HSPF model and calibrated it using streamflow, surface water, and groundwater quality monitoring data collected during 2014-16. We re-discretized a regional MODFLOW model to simulate groundwater flow in the study area with a finer resolution. We simulated existing, historic, and future streamflow, temperature, bacteria, and metals. Model simulation results were used to assess hydrologic metrics and estimate B-IBI scores based on regional regression equations. The study found that extensive stormwater infiltration effectively mitigated MS4 stormwater impacts on water quality and hydrology. Nevertheless, observed B-IBI scores are low. The study identified elevated water temperature and lack of habitat complexity as likely stressors for benthic macroinvertebrates. Four stormwater management strategies were evaluated.
机译:皮尔斯县(WA)制定了Spanaway分水岭规模的雨水管理计划,以满足MS4许可证的要求。流域几乎所有雨水都进入,地表水和地下水之间的强相互作用在雨水规划中起着重要作用。我们建立了HSPF模型,并使用2014-16年期间收集的水流,地表水和地下水质量监测数据对其进行了校准。我们重新离散了区域MODFLOW模型,以更精细的分辨率模拟研究区域中的地下水流。我们模拟了现有的,历史的和将来的流量,温度,细菌和金属。模型模拟结果用于评估水文指标,并根据区域回归方程估算B-IBI分数。研究发现,大量的雨水渗透有效地缓解了MS4雨水对水质和水文的影响。但是,观察到的B-IBI分数很低。该研究确定水温升高和栖息地复杂性不足是底栖大型无脊椎动物的压力源。评估了四种雨水管理策略。

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