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Turbidity current in a circular settling tank

机译:圆形沉淀池中的浊度电流

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This paper deals with turbidity currents in a circular settling tank. A mathematical model with a k-epsilon turbulence model has been developed. Using this mathematical model, the following unique properties of turbidity currents in a circular settling tank are demonstrated: turbulence induced by the turbidity currents remains after most sediment particles have settled down. This residual turbulent diffusivity has a serious effect on the settling of finer particles. This phenomenon is a very important result in this study. Especially, in the case of a smaller densimetric Froude number, which is a stronger density effect, this residual turbulence effect increases, and also decreases the removal ratio in the downstream with low concentration. Generally, the bottom density current enhances the sediment transport near the tank bottom, while the bottom shear gives reversal influence. When the settling velocity is high, the settling ends under the developing stage both of the turbidity current and of the bottom boundary layer. On the contrary, if the settling velocity is low, the sediment travels a long distance, where the boundary layer is built up, resulting in the reduction of sediment transport near the tank bottom. The overall properties of the density-affected settling tank are also investigated in terms of the removal ratio.
机译:本文涉及圆形沉降池中的浊流。已经开发出具有k-ε湍流模型的数学模型。使用该数学模型,证明了圆形沉降池中混浊流的以下独特特性:在大多数沉积物颗粒沉降之后,由混浊流引起的混流仍然存在。这种残留的湍流扩散率对较细颗粒的沉降具有严重影响。这种现象是这项研究中非常重要的结果。特别是在密度弗劳德数较小的情况下,这是更强的密度效应,这种残余湍流效应增加,并且在低浓度下在下游的去除率也会降低。通常,底部密度流增强了罐底附近的泥沙输送,而底部剪切力产生了反向影响。当沉降速度高时,沉降在浊流和底部边界层的发展阶段下结束。相反,如果沉降速度较低,则泥沙会流过很长的距离,在边界层处形成堆积物,从而减少了罐底附近的泥沙输送。还根据去除率研究了受密度影响的沉降池的总体性能。

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