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Large probe arrays for measuring mean and time dependent local oil volume fraction and local oil velocity component distributions in inclined oil-in-water flows

机译:大型探头阵列,用于测量倾斜的水包油流中的平均和时间相关的局部油体积分数和局部油速分量分布

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摘要

Arrays of dual-sensor and four-sensor needle conductance probes have been used to measure the mean and time dependent local properties of upward inclined, bubbly oil-in-water flows (also known as dispersed oil-in-water flows) in a 153mm diameter pipe. The flow properties that were measured were (i) the local in-situ oil volume fraction ; (ii) the local oil velocity in the axial direction of the pipe (the direction); and (iii) the local oil velocity in the direction from the lower side of the inclined pipe to its upper side (the direction). Oil velocities in the direction (orthogonal to the and directions) were found to be negligible. For all of the flow conditions investigated it was found that the mean value of varied from a maximum value at the upper side of the inclined pipe to a minimum value at the lower side, and that the rate of decrease of this mean value of with distance in the direction became greater as the pipe inclination angle from the vertical was increased. It was also found that the mean value of was greatest at the upper side of the inclined pipe and decreased towards the lower side of the inclined pipe, the rate of decrease with distance in the direction again becoming greater as was increased. For , a water volumetric flow rate , an oil volumetric flow rate and using a sampling period over a total time interval of , it was found that at the upper side of the inclined pipe the standard deviation in was 31.6% of the mean value of . Furthermore for , , and it was found that the standard deviation in the cross-pipe oil velocity component was approximately equal to the standard deviation in the axial velocity component . These large temporal variations in the local flow properties have been attributed to the presence of large scale Kelvin-Helmholtz waves which intermittently appear in the flow. It is believed that the techniques outlined in this paper for measuring the standard deviation of local flow properties as a function of the sampling period will be of considerable value in validating mathematical models of time dependent oil-water flows. It should be noted that the principal focus of this paper is on the measurement techniques that were used and the methods of data analysis rather than the presentation of exhaustive experimental results at numerous different flow conditions.
机译:双传感器和四传感器针电导探针阵列已用于测量153mm内向上倾斜的气泡状水包油流(也称为分散的水包油流)的均值和时间相关的局部特性。直径管。测得的流动特性是:(i)局部原位油体积分数; (ii)沿管道轴向(方向)的局部油速; (iii)从倾斜管的下侧到其上侧的方向(方向)上的局部油速。发现方向(与和正交的方向)上的油速可忽略不计。对于所研究的所有流动条件,发现平均值从倾斜管上侧的最大值变化到下侧的最小值,并且该平均值的减小率随着距离的增加而减小。随着与垂直方向的管道倾斜角度的增加,方向上的“方向”变大。还发现,平均值在倾斜管的上侧处最大,并且向倾斜管的下侧处减小,随着在距离方向上的距离的减小率随着增大而再次变大。对于,在总时间间隔内的水体积流量,油体积流量和采样周期,发现在倾斜管的上侧的标准偏差为的平均值的31.6%。此外,对于,发现跨管油速分量的标准偏差近似等于轴向速度分量的标准偏差。局部流动性质的这些较大的时间变化已归因于间歇性地出现在流动中的大规模开尔文-亥姆霍兹波的存在。可以相信,本文中概述的用于测量随采样周期变化的局部流量特性的标准偏差的技术在验证与时间有关的油水流量的数学模型中将具有相当大的价值。应该注意的是,本文的主要重点是所使用的测量技术和数据分析方法,而不是在多种不同流动条件下呈现详尽的实验结果。

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    Lucas, Gary; Zhao, X.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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