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Probabilistic modeling of detention basins for highway stormwater runoff pollutant removal efficiency

机译:公路雨水径流污染物去除效率的滞洪区概率模型

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摘要

The effects of various design configurations and the operation of detention basins for pollutant removal efficiency is evaluated using a Monte-Carlo simulation approach. A physically based numerical model representing the build-up and wash-off of pollutants from the highway surface has been used to predict storm events pollutographs for dissolved Cu and Zn. The probability of discharging dissolved Cu and Zn from detention basins were assessed using randomly-generated rainfall-runoff events and build-up pollutant concentrations. The simulations were performed by comparing the results of a one-compartment detention basin with a two-compartment design. The simulation results revealed that dividing the detention basin into two compartments and using the first compartment for first flush treatment can substantially reduce the frequency of discharging toxic metals such as Cu and Zn into the receiving waters. With the first flush treatment method, the size of the detention basin can be reduced to half of the conventional design.
机译:使用蒙特卡洛模拟方法评估了各种设计配置和滞留池操作对污染物去除效率的影响。基于物理的数值模型代表了高速公路表面污染物的堆积和冲刷,已被用于预测溶解铜和锌的暴雨事件污染图。利用随机产生的降雨径流事件和污染物累积浓度评估了从滞留盆地排放溶解的铜和锌的可能性。通过比较单室滞留池和两室设计的结果进行了模拟。仿真结果表明,将滞留池划分为两个隔室,并使用第一个隔室进行第一次冲洗处理,可以大大减少将有毒金属(例如Cu和Zn)排放到接收水中的频率。使用第一种冲洗处理方法,可以将滞留池的尺寸减小到传统设计的一半。

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