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致密砂岩储层径向井压裂技术的适应性
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作者 雍煜宁 郭肇权 +4 位作者 李根生 翟佳恒 田守嶒 盛茂 王天宇 《西安石油大学学报(自然科学版)》 北大核心 2025年第2期56-64,共9页
为探究径向井压裂技术在不同致密砂岩储层的适应性,利用人工致密砂岩岩样(300 mm×300 mm×300 mm)开展了真三轴径向井压裂室内实验,分析了正断层、走滑断层与逆断层3种地应力状态及不同径向井方位角下压裂裂缝形态与岩石破裂... 为探究径向井压裂技术在不同致密砂岩储层的适应性,利用人工致密砂岩岩样(300 mm×300 mm×300 mm)开展了真三轴径向井压裂室内实验,分析了正断层、走滑断层与逆断层3种地应力状态及不同径向井方位角下压裂裂缝形态与岩石破裂压力。研究表明:储层为正断层应力状态时,方位角低于45°的径向井能有效引导裂缝扩展,岩石破裂压力随方位角增大而增大;走滑断层应力状态时,裂缝形态受地应力场与径向井周应力场共同影响,方位角低于60°时有利于多排径向井的连通,且裂缝形态越复杂,岩石破裂压力越大;逆断层应力状态时,不同方位角径向井压裂后均形成单一水平裂缝。研究成果可为径向井压裂技术在不同致密砂岩储层的应用提供理论指导。 展开更多
关键词 径向井压裂 裂缝形态 破裂压力 致密砂岩
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径向井立体压裂裂缝扩展数值模拟 被引量:4
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作者 王天宇 郭肇权 +4 位作者 李根生 马正超 雍煜宁 常鑫 田守嶒 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2023年第3期613-623,共11页
基于有限元-无网格法,考虑压裂液流动与岩石基质变形的耦合作用,建立了径向井压裂裂缝扩展数值模型,模拟了径向井压裂裂缝形态,定量表征了径向井对裂缝的诱导作用,揭示了方位夹角、水平主应力差与岩石基质渗透率等对裂缝形态演化的影响... 基于有限元-无网格法,考虑压裂液流动与岩石基质变形的耦合作用,建立了径向井压裂裂缝扩展数值模型,模拟了径向井压裂裂缝形态,定量表征了径向井对裂缝的诱导作用,揭示了方位夹角、水平主应力差与岩石基质渗透率等对裂缝形态演化的影响机制。研究表明,同层双分支径向井压裂时径向井间存在挤压作用,当径向井沿最小水平主应力方向对称分布且方位夹角大于15°时,挤压作用减小了径向井的裂缝引导长度,当径向井沿最大水平主应力方向对称分布时,挤压作用增大了径向井的裂缝引导长度。裂缝形态由径向井的纠偏作用、径向井间的挤压作用与最大水平主应力的偏转作用共同控制。当径向井沿最小水平主应力方向对称分布时,径向井的裂缝引导长度随着方位夹角的增大逐渐减小,当径向井沿最大水平主应力方向对称分布时,径向井的裂缝引导长度随着方位夹角的增大先减小后增大。径向井的裂缝引导长度随水平主应力差的增大而减小。岩石基质渗透率增大,径向井周围基质的孔隙压力增大,对裂缝的诱导作用增强。 展开更多
关键词 径向井 立体压裂 裂缝扩展模拟 有限元-无网格法 流固耦合
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Numerical simulation of three-dimensional fracturing fracture propagation in radial wells 被引量:1
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作者 WANG Tianyu GUO Zhaoquan +4 位作者 LI Gensheng MA Zhengchao yong yuning CHANG Xin TIAN Shouceng 《Petroleum Exploration and Development》 SCIE 2023年第3期699-711,共13页
A fracture propagation model of radial well fracturing is established based on the finite element-meshless method.The model considers the coupling effect of fracturing fluid flow and rock matrix deformation.The fractu... A fracture propagation model of radial well fracturing is established based on the finite element-meshless method.The model considers the coupling effect of fracturing fluid flow and rock matrix deformation.The fracture geometries of radial well fracturing are simulated,the induction effect of radial well on the fracture is quantitatively characterized,and the influences of azimuth,horizontal principle stress difference,and reservoir matrix permeability on the fracture geometries are revealed.The radial wells can induce the fractures to extend parallel to their axes when two radial wells in the same layer are fractured.When the radial wells are symmetrically distributed along the direction of the minimum horizontal principle stress with the azimuth greater than 15,the extrusion effect reduces the fracture length of radial wells.When the radial wells are symmetrically distributed along the direction of the maximum horizontal principal stress,the extrusion increases the fracture length of the radial wells.The fracture geometries are controlled by the rectification of radial borehole,the extrusion between radial wells in the same layer,and the deflection of the maximum horizontal principal stress.When the radial wells are distributed along the minimum horizontal principal stress symmetrically,the fracture length induced by the radial well decreases with the increase of azimuth;in contrast,when the radial wells are distributed along the maximum horizontal principal stress symmetrically,the fracture length induced by the radial well first decreases and then increases with the increase of azimuth.The fracture length induced by the radial well decreases with the increase of horizontal principal stress difference.The increase of rock matrix permeability and pore pressure of the matrix around radial wells makes the inducing effect of the radial well on fractures increase. 展开更多
关键词 radial well three-dimensional fracturing fracture propagation simulation finite element-meshless method fluid-solid coupling
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