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洞穴-裂缝-孔隙三重介质气藏气井产量变化特征分析 被引量:3
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作者 朱斌 冯曦 《钻采工艺》 CAS 北大核心 2010年第1期47-48,53,共3页
洞穴-裂缝-孔隙型气藏具有既不同于均质地层,也有别于裂缝-孔隙气藏,具有特殊渗流机理。目前对洞穴-裂缝-孔隙型气藏生产过程中气井产量变化特征的研究还不多见。文章建立和求解了洞穴-裂缝-孔隙型气藏气井定井底流压生产数学模型,计算... 洞穴-裂缝-孔隙型气藏具有既不同于均质地层,也有别于裂缝-孔隙气藏,具有特殊渗流机理。目前对洞穴-裂缝-孔隙型气藏生产过程中气井产量变化特征的研究还不多见。文章建立和求解了洞穴-裂缝-孔隙型气藏气井定井底流压生产数学模型,计算分析了产量随时间变化的特征及其敏感因素,为正确认识裂缝-孔隙型储层气井产量变化规律具有指导意义。 展开更多
关键词 洞穴-裂缝-孔隙 气井 定压 产量 变化
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川东石炭系气藏低渗区合理井距确定方法 被引量:7
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作者 朱斌 熊燕莉 +2 位作者 王浩 陈芳 杜宇 《天然气勘探与开发》 2009年第3期27-28,44,共3页
川东石炭系气藏低渗区井网密度较中、高渗区低,井距大,对低渗区储量的控制程度差是导致当前低渗区采出程度低的重要原因。提高低渗储量采收率必须对现有井网进行调整,气田合理井网部署的重要因素之一是合理井距的确定。从确定气藏合理... 川东石炭系气藏低渗区井网密度较中、高渗区低,井距大,对低渗区储量的控制程度差是导致当前低渗区采出程度低的重要原因。提高低渗储量采收率必须对现有井网进行调整,气田合理井网部署的重要因素之一是合理井距的确定。从确定气藏合理井距出发,采用多种分析计算方法,得出了川东WBT气田石炭系气藏低渗区直井与水平井合理井距,为川东地区石炭系气藏低渗区开发井网的合理部署提供了依据。 展开更多
关键词 石炭系 低渗透 合理井距
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裂缝—孔隙型气藏气井产量变化特征分析 被引量:1
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作者 朱斌 冯曦 +1 位作者 刘晓旭 金连善 《天然气勘探与开发》 2008年第2期32-34,共3页
四川盆地裂缝—孔隙型气藏数量较多,不同气井产量随时间变化特征差异大,过去对其中起主导作用的影响因素定量化了解不够。通过建立和求解裂缝—孔隙型两区复合地层定井底流压生产数学模型,计算分析了产量随时间变化的特征及敏感因素,为... 四川盆地裂缝—孔隙型气藏数量较多,不同气井产量随时间变化特征差异大,过去对其中起主导作用的影响因素定量化了解不够。通过建立和求解裂缝—孔隙型两区复合地层定井底流压生产数学模型,计算分析了产量随时间变化的特征及敏感因素,为正确认识裂缝—孔隙型储层气井产量变化规律提供了理论依据。 展开更多
关键词 裂缝—孔隙 气井 定压 产量变化
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转向重复压裂暂堵剂ZFJ的研制 被引量:16
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作者 周法元 蒲万芬 +2 位作者 刘春志 赵冀 刘涛 《钻采工艺》 CAS 北大核心 2010年第5期111-113,142,共3页
暂堵转向重复压裂技术是提高油层挖潜水平的有利手段。文章通过对聚合物浓度、预胶联浓度、第二交联剂浓度、破胶剂浓度系统的研究,确定转向重复压裂暂堵剂ZFJ主要配方组成:2.5%~3%聚合物A+聚交比为70:1的预胶联+0.8%~1.2%第二交联剂+... 暂堵转向重复压裂技术是提高油层挖潜水平的有利手段。文章通过对聚合物浓度、预胶联浓度、第二交联剂浓度、破胶剂浓度系统的研究,确定转向重复压裂暂堵剂ZFJ主要配方组成:2.5%~3%聚合物A+聚交比为70:1的预胶联+0.8%~1.2%第二交联剂+0.2%~0.35%破胶剂X。评价了暂堵剂ZFJ耐酸碱性及抗盐性能和对不同渗透率、缝宽地层的暂堵和破胶情况。实验研究表明暂堵剂ZFJ有较好的耐碱和抗盐性,有一定的耐酸性能够满足暂堵转向重复压裂要求。 展开更多
关键词 转向重复压裂 暂堵剂 增产措施 预胶联 裂缝 岩心流动实验
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Nuclear magnetic resonance T_2 spectrum:multifractal characteristics and pore structure evaluation 被引量:20
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作者 Yan Jian-Ping He Xu +4 位作者 Geng Bin Hu Qin-Hong Feng Chun-Zhen Kou Xiao-Pan Li Xing-Wen 《Applied Geophysics》 SCIE CSCD 2017年第2期205-215,322,共12页
Pore structure characteristics are important to oil and gas exploration in complex low-permeability reservoirs. Using multifractal theory and nuclear magnetic resonance (NMR), we studied the pore structure of low-pe... Pore structure characteristics are important to oil and gas exploration in complex low-permeability reservoirs. Using multifractal theory and nuclear magnetic resonance (NMR), we studied the pore structure of low-permeability sandstone rocks from the 4th Member (Es4) of the Shahejie Formation in the south slope of the Dongying Sag. We used the existing pore structure data from petrophysics, core slices, and mercury injection tests to classify the pore structure into three categories and five subcategories. Then, the T2 spectra of samples with different pore structures were interpolated, and the one- and three-dimensional fractal dimensions and the multifractal spectrum were obtained. Parameters a (intensity of singularity) andf(a) (density of distribution) were extracted from the multifractal spectra. The differences in the three fractal dimensions suggest that the pore structure types correlate with a andf(a). The results calculated based on the multifractal spectrum is consistent with that of the core slices and mercury injection. Finally, the proposed method was applied to an actual logging profile to evaluate the pore structure of low-permeability sandstone reservoirs. 展开更多
关键词 NMR T2 spectrum MULTIFRACTAL INTERPOLATION pore structure PERMEABILITY SANDSTONE
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Marchenko imaging based on self-adaptive traveltime updating
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作者 Chen Xiao-Chun Hu Ye-Zheng +4 位作者 Huang Xu-Ri Zhang Hou-Zhu Cao Wei-Ping Xu Yun-Gui Tang Jing 《Applied Geophysics》 SCIE CSCD 2020年第1期81-91,168,169,共13页
Marchenko imaging obtains the subsurface reflectors using one-way Green’s functions,which are retrieved by solving the Marchenko equation.This method generates an image that is free of spurious artifacts due to inter... Marchenko imaging obtains the subsurface reflectors using one-way Green’s functions,which are retrieved by solving the Marchenko equation.This method generates an image that is free of spurious artifacts due to internal multiples.The Marchenko imaging method is a target-oriented technique;thus,it can image a user specified area.In the traditional Marchenko method,an accurate velocity model is critical for estimating direct waves from imaging points to the surface.An error in the velocity model results in the inaccurate estimation of direct waves.In turn,this leads to errors in computation of one-way Green’s functions,which then affects the final Marchenko images.To solve this problem,in this paper,we propose a self-adaptive traveltime updating technique based on the principle of equal traveltime to improve the Marchenko imaging method.The proposed method calculates the time shift of direct waves caused by the error in the velocity model,and corrects the wrong direct wave according to the time shift and reconstructs the correct Green’s functions.The proposed method improves the results of imaging using an inaccurate velocity model.By comparing the results from traditional Marchenko and the new method using synthetic data experiments,we demonstrated that the adaptive traveltime updating Marchenko imaging method could restore the image of geological structures to their true positions. 展开更多
关键词 Marchenko imaging Marchenko equation Green’s function principle of equal traveltime self-adaptive traveltime updating
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