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Intensification of treatment processes for oily wastewater: Theoretical foundations for calculating the hydrodynamic characteristics of tube coalescers

机译:强化含油废水处理工艺:计算管式凝聚器水动力特性的理论基础

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摘要

We present the results of theoretical studies of the pressure fluid flow fundamental characteristics in tube coalescers used in the treatment processes for oily wastewater. It is shown that three different regions of flow (wall sublayer, transition sublayer, and flow kernel), having their own hydrodynamic characteristics, are formed in a cross section of the tube coalescer. In the viscous wall sublayer (of thickness δ*). viscous frictional forces exceed inertial forces (Re_δ* < 1), and "creeping flow" is observed. This region borders on the transition sublayer (of thickness δ** = δ*), in which inertial forces exceed viscous frictional forces (Reδ** > 1). For both laminar and turbulent flow, distribution laws of local velocities and velocity gradients along the pipe radius are obtained in each of the three regions. In the flow kernel, the linear distribution law of velocity gradients gives a square distribution law of velocities for both types of flow, but for the turbulent flow, the correction coefficients A = β and 6 = 2β - 1 must be introduced.
机译:我们介绍了在含油废水处理过程中使用的管式聚结器中压力流体流动基本特性的理论研究结果。结果表明,在管式聚结器的横截面中形成了三个不同的流动区域(壁子层,过渡子层和流动核),它们具有各自的流体动力特性。在粘性壁子层中(厚度为δ*)。粘性摩擦力超过惯性力(Re_δ* <1),并且观察到“蠕变流”。该区域边界在过渡子层(厚度δ** =δ*)上,其中惯性力超过粘性摩擦力(Reδ**> 1)。对于层流和湍流,在三个区域的每一个中都获得了沿管道半径的局部速度和速度梯度的分布规律。在流动核中,速度梯度的线性分布定律给出了两种流动类型的速度的平方分布定律,但是对于湍流,必须引入校正系数A =β和6 =2β-1。

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