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首页> 外文期刊>Journal of Hydrology >A physically-based model for dissolved pollutant transport over impervious surfaces
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A physically-based model for dissolved pollutant transport over impervious surfaces

机译:基于物理的溶解污染物在不透水表面上的传输模型

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摘要

Dissolved pollutant transport over the ground surface is one of the main contributors to water pollution in urban environment. However, existing widely applied transport models are semi-empirical and the mechanism of the dissolved pollutant runoff is still not well understood. A novel physically-based transport model for dissolved pollutant is herein proposed by adopting a "control layer" concept in the overland flow. This transport model assumes that the dissolved pollutant in the upper runoff water is completely mixed with that in the underneath control layer. To verify the proposed model, a series of laboratory experiments were conducted. It showed that the predictions made by the model are in good agreement with the experimental results. The depth of the control layer is mainly correlated with the bed slope and shows no obvious dependence on rainfall intensity. The minimum depth of the control layer is bounded by a limiting value. In addition, the maximum pollutant transport rate is found to occur at the time of concentration. The rainfall intensity, bed slope, surface roughness and catchment length are dominant factors that control the dissolved pollutant transport. The wash-off coefficient is a function of time and is found to be the reciprocal of the average water depth of the catchment area over which the equilibrium state has been reached. This study advances the understanding of the mechanism of the dissolved pollutant transport in urban environment.
机译:溶解污染物在地表的迁移是造成城市环境水污染的主要因素之一。然而,现有广泛应用的输运模型是半经验性的,溶解污染物径流的机理仍未得到很好的理解。本文通过采用陆上流的“控制层”概念,提出了一种新的基于物理的溶解污染物输运模型。该输运模型假设上层径流水中的溶解污染物与下层控制层中的溶解污染物完全混合。为了验证所提出的模型,进行了一系列实验室实验。结果表明,模型的预测结果与实验结果吻合较好。控制层深度主要与河床坡度相关,对降雨强度无明显依赖性。控制层的最小深度以限制值为界。此外,发现最大污染物迁移速率发生在浓缩时。降雨强度、河床坡度、地表粗糙度和集水区长度是控制溶解污染物输送的主要因素。冲刷系数是时间的函数,是达到平衡状态的集水区平均水深的倒数。本研究进一步加深了对城市环境中溶解污染物迁移机制的理解。

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