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首页> 外文期刊>International Journal of Multiphase Flow >Detailed flow field measurements and analysis in highly viscous slug flow in horizontal pipes
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Detailed flow field measurements and analysis in highly viscous slug flow in horizontal pipes

机译:水平管中高粘滞块流的详细流场测量和分析

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摘要

The flow field in the liquid phase of high viscous oil and air two-phase slug flow were experimentally studied under laminar flow conditions. The horizontal 50.8-mm (2-in.) inner diameter (ID) pipe and high viscous fluid properties (nominal viscosity values of 0.51, 0.68 and 0.96 Pa·s) yielded mixture Reynolds numbers less than 100. Particle Image Velocimetry (PIV) was used to analyze the flow field in the liquid phase. Slug characteristics were measured with a set of capacitance probes (CPs). Based on velocity field measurements, the liquid phase mass is shown to be conserved within the slug body despite local spatial variations in volumetric flow rate – flow accelerates at slug front and decelerates at slug tail. A low momentum region inside the liquid phase is identified beneath the mixing zone and close to the lower sections of the pipe. Furthermore, based on a frame of reference moving with the slug front, a pair of vortices is identified at the slug front. Accordingly, a continuous increase in velocity is observed at lower sections of the pipe. From CPs data, the flow coefficient is estimated to be between 2.11 and 2.20 for the elongated bubble flow, and 2.26 and 2.38 for the slug flow in laminar conditions investigated. From PIV data, the flow coefficient is estimated to be between 2.28 and 2.34 for the elongated bubble, and 2.31 and 2.44 for the slug flow, respectively. These slight differences in the obtained values of flow coefficient indicate the possible misunderstands of 1.13 multiplier.
机译:在层流条件下通过实验研究高粘性油和空气两相块块流的液相中的流场。水平50.8mm(2英寸)内径(ID)管和高粘度液体性质(0.51,0.68和0.96Pa·s的标称粘度值,产生较小于100的混合物雷诺数。颗粒图像VELOCIMETRY(PIV)用于分析液相中的流场。用一组电容探针(CPS)测量SLUC特性。基于速度场测量,尽管体积流量速率的局部空间变化 - 在块尾部的块尾和减速时,但液相质量显示在夹持体内在块体内被保存。液相内的低动量区域被识别在混合区下方并靠近管道的下部。此外,基于与块前沿移动的参考框架,在块前面识别一对涡流。因此,在管的下部观察到速度的连续增加。从CPS数据,估计流量系数为2.11和2.20,对于细长的气泡流动,2.26和2.38在层流条件下进行的块状物流。从PIV数据,流量系数估计为细长气泡的2.28和2.34,分别用于2.31和2.44的SLUG流动。所获得的流量系数值的这些轻微差异表示1.13乘法器的可能误解。

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