首页> 外文期刊>Journal of Petroleum Science & Engineering >Constant-pressure well test analysis of finite-conductivity hydraulically fractured gas wells influenced by non-Darcy flow effects
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Constant-pressure well test analysis of finite-conductivity hydraulically fractured gas wells influenced by non-Darcy flow effects

机译:非达西渗流影响的有限导水力压裂气井的恒压试井分析

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Non-Darcy flow effects have long been recognized to have serious adverse impact on the performance of high flow rate gas wells.These effects may mask the presence of fractures around the wellbores of naturally fractured reservoirs and may render the effective fracture conductivity and fracture half-length of hydraulically fractured wells much less than the designed parameters.Even though the effects of non-Darcy flow have been identified in the field and properly acknowledged in the well testing literature,little has been done to improve the well test analysis results.This paper presents a new technique that accurately determines the fracture conductivity of hydraulically fractured gas wells producing at constant-bottomhole pressure and provides direct means to calculate the magnitude of turbulence in the fracture around the wellbore from a single well test.A semi-analytical equation that incorporates the effects of non-Darcy flow in the fracture is presented for the first time.A detailed investigation of the various parameters that influence the flow behavior of real gas in the fracture nearby the wellbore is also illustrated.Furthermore,a systematic method for calculating the fracture conductivity and non-Darcy flow coefficient from a single well test is outlined.The final working equations are presented in such a way that permits a straightforward,simple,yet accurate analysis of the variable flow rate with time.No type-curve matching,multirate tests or correlations are required.The methodology of the proposed technique is illustrated using several synthetic examples.
机译:长期以来,人们一直认为非达西流动效应对高流量气井的性能会产生严重的不利影响,这些效应可能掩盖了天然裂缝性储层井筒周围裂缝的存在,并可能使有效裂缝导流能力和裂缝半壁厚。水力压裂井的长度远小于设计参数。即使在现场已经确定了非达西流动的影响,并在试井文献中得到了适当的承认,但为改善试井分析结果做了一些努力。提出了一种新技术,该技术可以精确确定在恒定井底压力下生产的水力压裂气井的裂缝电导率,并提供直接手段根据单井测试计算井眼周围裂缝的湍流幅度。首次提出了非达西渗流对裂缝的影响。还说明了影响井眼附近裂缝中的真实气体流动行为的各种参数的领导研究。此外,概述了一种通过单井测试计算裂缝电导率和非达西流动系数的系统方法。给出的工作方程式可以对流量随时间的变化进行直接,简单,准确的分析,不需要类型曲线匹配,多速率测试或相关性。例子。

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