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首页> 外文期刊>Journal of Hydrology >Modeling dynamic performance of urban infiltration trench systems: Methodology and a case study in Philadelphia
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Modeling dynamic performance of urban infiltration trench systems: Methodology and a case study in Philadelphia

机译:城市渗透沟渠系统的动态性能模型:Philadelphia的方法论和案例研究

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Infiltration trenches are popular green stormwater infrastructure (GSI) systems in dense urban areas primarily due to their small footprints that cope with the limited available space and subsurface utility conditions. To investigate the dynamic, seasonal performance of urban infiltration trench systems, more than three years of continuous rainfall and water level data from an infiltration trench in Philadelphia, Pennsylvania, were analyzed. The recession rates in the infiltration trench showed a seasonality (higher recession rates in warmer months and lower recession rates in colder months) and a head-dependency (higher recession rates in higher water levels). To incorporate this dynamic performance into a simple modeling approach that can be used in practical applications, both event-based and continuous simulation models were developed using storage units in SWMM, and calibrated/validated against observed data. The most important conclusions for dynamic modeling of infiltration trench systems were the introduction of monthly adjustment factors for saturated hydraulic conductivity (Ksat) and a head-dependent component for infiltration to the surrounding in-situ soil in the model, both of which were determined by calibration. Benefits of the presented dynamic modeling approach were demonstrated by comparing the dynamic and static modeling results, indicating the capability of the dynamic approach to promote sustainable and resilient design of infiltration trench systems.
机译:渗水沟是密集城市地区流行的绿色雨水基础设施(GSI)系统,主要是因为其占地面积小,能够应对有限的可用空间和地下设施条件。为了研究城市渗水沟系统的动态、季节性性能,对宾夕法尼亚州费城渗水沟三年多的连续降雨和水位数据进行了分析。渗透沟中的衰退率表现出季节性(温暖月份的衰退率较高,寒冷月份的衰退率较低)和水头依赖性(较高水位的衰退率较高)。为了将这种动态性能纳入可用于实际应用的简单建模方法中,使用SWMM中的存储单元开发了基于事件的和连续的仿真模型,并根据观测数据进行了校准/验证。渗水沟系统动态建模的最重要结论是,在模型中引入了饱和导水率(Ksat)的月度调整系数和渗透到周围原位土壤的水头相关分量,这两个因素都是通过校准确定的。通过比较动态和静态建模结果,证明了所提出的动态建模方法的优点,表明动态方法能够促进渗滤沟系统的可持续和弹性设计。

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