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首页> 外文期刊>Energy sources >A New Model to Determine the Two-phase Drilling Fluid Behavior Through Horizontal Eccentric Annular Geometry, Part A: Flow Pattern Identification and Liquid Hold-up Estimation
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A New Model to Determine the Two-phase Drilling Fluid Behavior Through Horizontal Eccentric Annular Geometry, Part A: Flow Pattern Identification and Liquid Hold-up Estimation

机译:通过水平偏心环形几何确定两相钻井液行为的新模型,A部分:流型识别和液体滞留量估算

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摘要

Flow patterns, liquid holdup, and frictional pressure gradient are three importance parameters to study the multiphase drilling fluid behavior. Although two-phase fluid flow is studied in detail for pipes, there exists a lack of information about aerated fluid flow behavior inside a wellbore. This study aims to identify the flow patterns of gasified fluids flowing inside a horizontal annulus, and to develop a method for measurement of liquid holdup by using the image processing techniques. Experiments have been conducted at Middle East Technical University (METU) Multiphase Flow Loop using air-water mixtures with various in-situ flow velocities. A digital high-speed camera is used for recording each test dynamically for the identification of flow patterns and the measurement of liquid holdup.
机译:流型,液体滞留率和摩擦压力梯度是研究多相钻井液行为的三个重要参数。尽管已对管道的两相流体流进行了详细研究,但仍缺乏有关井眼内充气流体流行为的信息。这项研究旨在确定水平环空中的气化流体的流动模式,并开发一种使用图像处理技术测量液体滞留率的方法。在中东技术大学(METU)多相流回路中进行了实验,使用了具有各种原位流速的空气-水混合物。数字高速相机用于动态记录每个测试,以识别流型和测量液体滞留率。

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