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Experimental study of the factors affecting the flow pattern transition in horizontal oil-water flow

机译:水平油流动流动模式过渡的因素的实验研究

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摘要

Flow patterns are important for pressure gradient calculation and corrosion protection. In this study, the characteristics of oil-water flow were investigated in a horizontal acrylic pipe with an inner diameter of 14.6 mm. The effects of oil viscosity, pipe diameter, pipe material and oil type were studied. Mineral oils with viscosity values of 20, 237 and 456 mPa.s were used as the working fluids. The flow patterns were identified by a high-speed camera and pressure gradients. The size of the dispersed oil droplets increased with increasing oil viscosity. The mixture velocity required to initiate ST&MI flow from SS flow increased with increasing oil viscosity. The transition boundaries extended to high velocities with increasing pipe diameter. In large-diameter pipes, the low-viscosity oil-water flow patterns were stratified flow, dispersed flow and their transition flow, and the high-viscosity oil-water flow patterns were annular flow in addition to these other flows. In small-diameter pipes, stratified flow, dispersed flow, annular flow and intermittent flow patterns were found for both low- and high-viscosity oil-water flow.
机译:流动模式对于压力梯度计算和腐蚀保护很重要。在该研究中,在内径为14.6mm的水平丙烯酸管中研究了油流量的特性。研究了油粘度,管道直径,管材和油型的影响。使用20,237和456MPa的粘度值的矿物油作为工作流体。通过高速相机和压力梯度识别流动模式。随着油粘度的增加,分散油滴的尺寸增加。随着油粘度的增加,从SS流动开始的ST和MI流动所需的混合速度增加。过渡边界延伸到具有增加管道直径的高速度。在大直径管中,低粘度油流量模式是分层的流动,分散的流动及其过渡流程,除了这些其他流动之外,高粘度油流量图案是环形的。在小直径管中,发现分层流动,分散的流动,环形流动和间歇流动模式,用于低粘度和高粘度的油水流。

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