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首页> 外文期刊>Open Journal of Yangtze Oil and Gas >Analysis of Gas and Liquid Two-Phase Slug Flow Production Logging Interpretation Model in near Horizontal Shale Gas Wells
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Analysis of Gas and Liquid Two-Phase Slug Flow Production Logging Interpretation Model in near Horizontal Shale Gas Wells

机译:近水平页岩气井气液两相段塞流产测井解释模型分析

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The development of shale gas reservoir is mainly based on horizontal well production. Slug flow of gas-liquid two-phase is invariably encountered in inclined wells and horizontal wells of a producing environment. Due to gravitational differentiation, oil-water two-phase flow pattern, the local velocity and local phase holdup along the radial direction of pipe in near horizontal wells will perform complicatedly. This paper presented the results of an experimental study and a theoretical analysis of two-phase gas/water flow in horizontal and highly inclined systems. Extensive experiments were conducted using a test loop made of 124 mm diameter acrylic pipe with inclination angles from the horizontal of 0°, 5°, 15°, 45°, -2°, -5° and -10°, and with the total flow rate ranging from 50 to 800 m~(3)/day. Based on the research on the law of slug flow dynamics model for gas-water two-phase flow in near horizontal pipeline, the theoretical analysis and experimental researches were done to propose the expressions of stable and exact production logging interpretation model for two-phase flow in near horizontal pipeline. The performance of the proposed method for estimating water holdup and water superficial velocity is in good agreement with our measurements. As a result, the slug flow dynamics model of gas-water two-phase flow in near horizontal wellbore was developed. The application effect of production logging in near horizontal wells had been improved.
机译:页岩气藏的开发主要以水平井生产为基础。在生产环境的倾斜井和水平井中总是遇到气液两相的段塞流。由于重力的差异,油水两相流型态,在近水平井中沿管道径向的局部速度和局部相滞留将变得复杂。本文介绍了水平和高倾斜系统中两相气/水流的实验研究结果和理论分析。使用由直径为124 mm的丙烯酸管制成的测试环进行了广泛的实验,其相对于水平面的倾斜角度为0°,5°,15°,45°,-2°,-5°和-10°流量范围从50到800 m〜(3)/天。在研究近水平管道气水两相流段塞动力学模型规律的基础上,进行了理论分析和实验研究,提出了稳定准确的两相流生产测井解释模型的表达式。在接近水平的管道中。所提出的估算持水量和水表观速度的方法的性能与我们的测量结果非常吻合。结果建立了近水平井筒气水两相流段塞动力学模型。提高了近水平井生产测井的应用效果。

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