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试井早期流态恢复及参数解释
引用本文:胡小虎,郑世毅.试井早期流态恢复及参数解释[J].西南石油大学学报(社会科学版),2012,32(4):87-91.
作者姓名:胡小虎  郑世毅
作者单位:(1.中国石油大学(北京)石油工程学院,北京 昌平 102249; 2.Heriot Watt University,Edinburgh EH14 4AS)
摘    要:根据压力数据中噪音对压力导数的影响随时间快速减弱的特点,针对地面流量恒定、流动期内定井储的压力数据,根据井筒物质平衡方程,采用指数流量模型按反向分段光滑拟合算法及约束条件,恢复出在开关井后井筒的续流流量,在此基础上,利用Ilk反褶积算法消除指定比例的井储效应,恢复出受井储效应影响的早期压力响应,并利用恢复的径向流直线段进行参数解释。含0.03MPa随机噪音的压力数据测试表明,方法稳定、结果准确。

关 键 词:试井    反褶积    井储效应    流态恢复    参数解释

THE EARLY RECOVERY OF FLOW PATTERN AND PARAMETER INTERPRETATION IN WELL TEST
HU Xiao-hu ZHENG Shi-yi.THE EARLY RECOVERY OF FLOW PATTERN AND PARAMETER INTERPRETATION IN WELL TEST[J].Journal of Southwest Petroleum University(Social Sciences Edition),2012,32(4):87-91.
Authors:HU Xiao-hu ZHENG Shi-yi
Institution:(1.College of Petroleum Engineering,China Petroleum University,Changping Beijing 102249,China;2.Heriot Watt University,Edinburgh EH14 4AS,Scotland)
Abstract:The impact of noise data on the pressure derivative is characterized by rapid dampening with time,and the after flow rate for the closure of constant surface rate with constant wellbore storage coefficient is recovered by segmented exponential function in inverted order according to the wellbore material balance equation.Based on this recovered after flow rate,the early time radial flow is uncovered by D.Ilk′s pressure rate deconvolution algorithm by removing specified percent of wellbore storage effect,and parameters of reservoir and wellbore are interpreted according to this recovered radial flow.This method is very stable and accurate according to the data test of pressure which contains 30 kPa random noise.
Keywords:well test                                                                                                                        deconvolution                                                                                                                        wellbore storage effect                                                                                                                        flow recovery                                                                                                                        parameter interpretation
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