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Studies on frictional pressure drop of gas-non-Newtonian fluid two-phase flow in the vacuum sewers

机译:真空下水道中非牛顿流体两相流的摩擦压降研究

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Calculating pressure drop of gas-liquid two-phase flow in sewage pipes is of great importance for designing and choosing safely and economically a vacuum sewers pipe network system, including power equipment and vacuum pipes, for transporting non-Newtonian fluid such as black water (mixture of dejecta and water) and sewage sludge, and so on. The aim of this article is to predict the characteristics of the multi-phase flow frictional pressure loss in the sewage pipes. First, a study has been undertaken to investigate two-phase flow frictional pressure loss with a mixture of air and black water non-Newtonian liquids in sewers pipes and the effects of gas and liquid flowrate on two-phase frictional pressure drop. A general correlation for calculating frictional pressure gradient during gas-non-Newtonian two-phase flow in pipes has been deduced, and the validity of the method applied to calculate pressure drop of gas-non-Newtonian two-phase flow has been compared and discussed with respect to several experiments on black water and air two-phase flow in a horizontal pipe. The calculated results are in agreement with the experimental results on the whole.
机译:计算污水管中气液两相流的压降对于设计和安全,经济地选择真空污水管网系统(包括动力设备和真空管)以输送非牛顿流体(如黑水)非常重要(粪便和水的混合物)和污水污泥等。本文的目的是预测污水管中多相流摩擦压力损失的特征。首先,进行了一项研究以研究污水管中空气和黑水非牛顿液体混合物的两相流动摩擦压力损失以及气体和液体流量对两相摩擦压力降的影响。推导了管道中非牛顿两相流动时的摩擦压力梯度计算的一般相关性,并比较和讨论了计算非牛顿两相流压降方法的有效性。关于水平管中黑水和空气两相流的几个实验。计算结果与实验结果基本吻合。

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