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Experimental Analysis of Gas Holdup Measured by Gas Array Tool in Gas–Water Two Phase of Horizontal Well

机译:水阵工具在水平井煤气 - 水中测量气体堆积的实验分析

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In the gas-water two phase of horizontal well, gas holdup is usually obtained by inverse calculation of the water holdup measured by the array capacitance probes. Gas Array Tool (GAT) has been developed to directly measure gas holdup. This instrument has been introduced into China and its simulation experiment in gas-water two phase flow in horizontal wells has been carried out for the first time to study the applicability of gas holdup measurement. Firstly, the response principle and measurement method of GAT are analyzed; secondly, the experimental data of GAT under different flowrates, water cut, and different cable speed are plotted and analyzed; finally, the gas holdup data measured by GAT and Capacitance Array Tool (CAT) are compared by using an interpolation algorithm. It is found that the response of the optical fiber probe is consistent and stable. It also proves the accuracy of gas identification and the applicability of gas holdup measurement under test conditions by GAT, which lays a foundation for further gas holdup measurement, interpretation, and field test in the future.
机译:在水平井的气水中,通常通过通过阵列电容探针测量的水堆来获得气体堆叠。已经开发出气体阵列工具(GAT)直接测量气体储存。该仪器已被引入中国,并首次进行了水平井中的天然气两相流的仿真实验,研究了气体储存测量的适用性。首先,分析了GAT的响应原理和测量方法;其次,绘制和分析了不同流量,水切割和不同电缆速度下GAT的实验数据;最后,通过使用插值算法比较通过GAT和电容阵列工具(CAT)测量的气体保持数据。发现光纤探针的响应是一致且稳定的。它还证明了天然气识别的准确性和GAT在试验条件下的气体持有测量的适用性,这为未来进一步的气体持有量度测量,解释和现场测试为进一步的气体储存,解释和现场测试提供了基础。

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