State Key Laboratory of Hydroscience and Engineering, Tsinghua University, Beijing 100084, China.
Environ Pollut. 2011 Jul;159(7):1932-40. doi: 10.1016/j.envpol.2011.03.019. Epub 2011 Apr 12.
Many urban nonpoint source pollution models utilize pollutant buildup and washoff functions to simulate storm runoff quality of urban catchments. In this paper, two urban pollutant washoff load models are derived using pollutant buildup and washoff functions. The first model assumes that there is no residual pollutant after a storm event while the second one assumes that there is always residual pollutant after each storm event. The developed models are calibrated and verified with observed data from an urban catchment in the Los Angeles County. The application results show that the developed model with consideration of residual pollutant is more capable of simulating nonpoint source pollution from urban storm runoff than that without consideration of residual pollutant. For the study area, residual pollutant should be considered in pollutant buildup and washoff functions for simulating urban nonpoint source pollution when the total runoff volume is less than 30 mm.
许多城市非点源污染模型利用污染物积累和冲刷函数来模拟城市流域的暴雨径流水质。本文利用污染物积累和冲刷函数推导了两种城市污染物冲刷负荷模型。第一个模型假设暴雨事件后没有残留污染物,而第二个模型则假设每次暴雨事件后都有残留污染物。所开发的模型通过洛杉矶县一个城市流域的观测数据进行了校准和验证。应用结果表明,考虑残留污染物的开发模型比不考虑残留污染物的开发模型更能模拟城市暴雨径流中的非点源污染。对于研究区域,当总径流量小于 30 毫米时,在模拟城市非点源污染时,应考虑在污染物积累和冲刷函数中存在残留污染物。