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首页> 外文期刊>Journal of the American Water Resources Association >MODELING FRAMEWORK FOR MANAGING COPPER RUNOFF IN URBAN WATERSHEDS
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MODELING FRAMEWORK FOR MANAGING COPPER RUNOFF IN URBAN WATERSHEDS

机译:城市流域铜径流管理模型框架。

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摘要

A modeling framework was developed for managing copper runoff in urban watersheds that incorporates water quality characterization, watershed land use areas, hydrologic data, a statistical simulator, a biotic ligand binding model to characterize acute toxicity, and a statistical method for setting a watershed specific copper loading. The modeling framework is driven by export coefficients derived from water quality parameters and hydrologic inputs measured in an urban watershed's storm water system. This framework was applied to a watershed containing a copper roof built in 1992. A series of simulations was run to predict the change in receiving stream water chemistry caused by roof aging and to determine the maximum copper loading (at the 99 percent confidence level) a watershed could accept without causing acute toxicity in the receiving stream. Forecasting the amount of copper flux responsible for exceeding the assimilation capacity of a watershed can be directly related to maximum copper loadings responsible for causing toxicity in the receiving streams. The framework developed in this study can be used to evaluate copper utilization in urban watersheds.
机译:开发了用于管理城市流域铜径流的建模框架,该模型框架结合了水质特征,流域土地利用区域,水文数据,统计模拟器,表征急性毒性的生物配体结合模型以及设置流域特定铜的统计方法加载中。该建模框架由从水质参数和城市流域雨水系统中测得的水文输入得出的出口系数驱动。此框架应用于1992年建造的包含铜屋顶的流域。进行了一系列模拟,以预测由屋顶老化引起的接收溪流水化学变化,并确定最大铜负荷(置信度为99%)流域可以接受而不会在接收流中引起急性毒性。预测导致超过分水岭的同化能力的铜通量的数量可能与导致接收流中毒性的最大铜负载量直接相关。本研究开发的框架可用于评估城市流域的铜利用率。

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