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PRELIMINARY RESULTS OF THE EXAMINATION OF THERMAL IMPACTS FROM STORMWATER BMPs

机译:检验STORMWATER BMP的热影响的初步结果

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The preliminary results to examine the 4 years of monitoring of runoff temperature for a range of stormwater management BMPs and the affects on stormwater runoff temperatures in relation to established environmental indicators are presented for a study in Durham, NH. Research indicates that thermal impacts are not limited to summer months but include other times important for life-cycle considerations. Stormwater BMPs examined include conventional, Low Impact Development, and manufactured treatment designs. Surface systems that are exposed to direct sunlight have been shown to increase already elevated runoff temperatures, while other systems that provide treatment by infiltration and filtration can reduce runoff temperatures by thermal exchange with cool subsurface materials. Results indicate there is an increase in the thermal mass of runoff from a storm sewer system draining an area of asphalt pavement with a 97% impervious cover. For the storm sewer system, the mean EMT value of 53.5°F (± 12.7°F), which is greater than the mean groundwater temperature, which resembles the mean daily average annual air temperature, of 47°F that feed coldwater streams (NCDC 2005). The examination of stormwater BMPs indicates that the larger surface systems will see greater thermal variations and the larger subsurface systems will see greater thermal buffering. One large surface system, the Retention Pond, with a mean value of 61.8°F (± 11.8°F) is susceptible to greater thermal variations. One large subsurface system, the Gravel Wetland, whose mean value of 48.7°F (± 12.0°F), indicates a greater thermal buffering. The Runoff, the Retention Pond, and the Gravel Wetland calculated maximum and minimum values of event mean temperatures of 75.4°F and 33.3°F, 81.3°F and 32.7°F, 70.0°F and 33.0°F respectively. These temperatures are important to note when considering lethality indices of aquatic species. Another indicator of the health of a system that has been utilized by environmental monitoring programs is the mean July temperature of the stream under investigation
机译:在新罕布什尔州达勒姆市进行的一项研究中,提供了检查一系列雨水管理BMP的4年径流温度监测的初步结果,以及与既定环境指标相关的对雨水径流温度的影响。研究表明,热影响不仅限于夏季,还包括对生命周期重要的其他时间。检查的雨水BMP包括常规,低影响开发和人工处理设计。暴露在直射阳光下的地表系统已显示出已经升高的径流温度,而其他通过渗透和过滤进行处理的系统可以通过与凉爽的地下物质进行热交换来降低径流温度。结果表明,雨水排放系统排放了覆盖率达97%的不透水沥青路面面积的径流热质量有所增加。对于雨水排放系统,EMT的平均值为53.5°F(±12.7°F),大于为冷水流(NCDC)供给的平均地下水温度(类似于每日平均年平均气温)47°F。 2005年)。雨水BMP的检查表明,较大的地表系统会遇到较大的热变化,而较大的地下系统会遇到更大的热缓冲。平均值为61.8°F(±11.8°F)的一种大型表面系统,即保留池,容易受到较大的热变化影响。一种大型地下系统,砾石湿地,其平均值为48.7°F(±12.0°F),表明有更大的热缓冲能力。径流,滞留池和砾石湿地分别计算出事件平均温度分别为75.4°F和33.3°F,81.3°F和32.7°F,70.0°F和33.0°F的最大值和最小值。在考虑水生物种的致死指数时,这些温度非常重要。环境监测程序已使用的系统运行状况的另一个指标是所调查河流的平均7月温度

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