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Chemical transport associated with discharge of contaminated fine particles to a steady open-channel flow

机译:化学品运输与污染的细颗粒排放到稳定的明渠流动有关

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摘要

In this paper, an analytical study on the advective-dispersive transport of a chemical contaminant resulting from the discharge of contaminated fine solid particles into a two-dimensional, steady and uniform turbulent open-channel flow is presented. Because of sorptive exchange, the transport of the chemical cloud is affected by that of the suspended particulates. Such a relationship has so far not been explicitly established by intuitive arguments. The effective transport equations are formally derived by an extended method of homogenization. It is found that over a long time scale the fall velocity will delay the sediment advection, and the advection velocity and dispersion coefficient for the chemical transport will change with space and time according to the local sediment concentration. Numerical results confirm that the centers of mass of the sediment and dissolved phase clouds are not advancing at the same speed, and the dispersion of the chemical is enhanced by the local retardation factor. © 2000 American Institute of Physics. [S1070-6631(00)01501-4].
机译:在本文中,对由于污染物的细小固体颗粒排放到二维,稳定且均匀的湍流明渠流中而导致的化学污染物的对流-扩散传输进行了分析研究。由于吸附交换,化学云的传输受到悬浮颗粒的传输的影响。到目前为止,还没有通过直观的论证明确建立这种关系。有效运输方程式是通过扩展的均质化方法正式得出的。研究发现,在很长的时间范围内,下降速度会延迟沉积物的对流,化学输送的对流速度和扩散系数会根据当地的沉积物浓度随时间和空间而变化。数值结果证实,沉积物和溶解相云的质心不是以相同的速度前进,并且化学物质的分散会因局部延迟因子而增强。 ©2000美国物理研究所。 [S1070-6631(00)01501-4]。

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