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Quantifying Thermal Characteristics of Stormwater through Low Impact Development Systems

机译:通过低影响力开发系统量化雨水的热特性

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Urbanization causes alteration of the thermal regime (surface, air, and water) of the environment. Heated stormwater runoff flows into lakes, streams, bays, and estuaries, which potentially increases the base temperature of the surface water. The amount of heat transferred, and the degree of thermal pollution is of great importance to the ecological integrity of receiving waters. This research reports on a controlled laboratory scale test to assess low impact development (LID) stormwater control measure impacts on the thermal characteristics of stormwater runoff. We hypothesize that LID stormwater control measures (SCMs) such as pervious surfaces and rain gardens/bioretention can be used to mitigate the ground level thermal loads from stormwater runoff. Laboratory methods in this study captured and infiltrated simulated stormwater runoff from four infrared heated substrate microcosms (pervious concrete, impervious concrete, permeable concrete pavers, and turf grass), and routed the stormwater through rain garden microcosms. A data logging system with thermistors located on, within, and at exits of the microcosms, recorded resulting stormwater temperature flux. Researchers compared steady state temperatures of the laboratory to previously collected field data and achieved between 30% to 60% higher steady state surface temperatures with indoor than outdoor test sites. This research helps establish baseline data to study heat removal effectiveness of pervious materials when used alone or in combination as a treatment train with other stormwater control measures such as rain gardens/bioretention.
机译:城市化导致环境热状况(地表,空气和水)的变化。加热的雨水径流流入湖泊,溪流,海湾和河口,这有可能增加地表水的基础温度。热量的传递和热污染的程度对于接收水的生态完整性至关重要。这项研究报告了一项受控实验室规模测试,以评估低影响发展(LID)雨水控制措施对雨水径流热特征的影响。我们假设可以使用LID雨水控制措施(SCM)(例如透水表面和雨水花园/生物保留)来减轻雨水径流引起的地面热负荷。本研究中的实验室方法从四个红外加热的基质缩微(透水混凝土,不透水混凝土,透水混凝土摊铺机和草皮草)中捕获并渗透了模拟雨水径流,并将雨水排入雨花园缩影中。一个带有热敏电阻的数据记录系统,该热敏电阻位于缩影的内部,内部和出口,记录了由此产生的雨水温度通量。研究人员将实验室的稳态温度与先前收集的现场数据进行了比较,室内的稳态表面温度要比室外的测试场所高30%至60%。这项研究有助于建立基准数据,以研究单独使用或与其他雨水控制措施(例如雨花园/生物保留)组合使用的透水材料除臭效果。

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