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Marine Wastewater Discharges from Multiport Diffusers. Ⅳ: Stratified Flowing Water

机译:多端口扩散器排放的海洋废水。 Ⅳ:分层流水

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Experiments on the near-field mixing of wastewater discharged from multiport diffusers into stratified flowing waters are reported for conditions typical of actual ocean sewage outfalls. Dilutions were measured by a newly developed three-dimensional laser-induced fluorescence system combined with refractive-index matching and by a microconductivity probe. The plume dynamics are complex. Depending on port spacing, plumes discharged from the upstream diffuser side may merge first with themselves, and then with the plumes discharged from the downstream side. Or the plumes that are horizontally opposed may first merge, followed by lateral merging. In all cases, however, the wastefield eventually becomes laterally homogeneous. The results are analyzed in terms of line or point-source parameters and it is found that they can be predicted by assuming the discharge to be a line plume when s/l_b < 1.0 and as point plumes for s/l_b ≥ 6.0. Semiempirical equations to predict the near-field dilution, near-field length, and plume rise height are presented.
机译:据报道,对于实际的海洋污水排污口的典型情况,进行了从多端口扩散器排放的废水近距离混合到分层流水中的实验。通过新开发的三维激光诱导荧光系统结合折射率匹配和微导探针测量稀释度。羽流动力学很复杂。根据端口间隔,从上游扩散器侧排出的羽流可以先与自身融合,然后再与从下游侧排出的羽流融合。或者,水平相对的羽状流可以先合并,然后再横向合并。但是,在所有情况下,废料场最终都会在横向上变得均匀。对结果进行了线或点源参数分析,发现可以通过假设s / l_b <1.0时的放电为线羽,而s / l_b≥6.0为点羽来预测。提出了用于预测近场稀释度,近场长度和羽状上升高度的半经验方程。

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