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热孔弹塑性完全耦合作用下的井底岩石应力分布 被引量:7
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作者 祝效华 刘伟吉 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2016年第5期72-78,共7页
井底待破碎岩石所处的应力状态作为影响其破碎的关键因素而直接影响着钻井效率,建立综合考虑上覆岩层压力、水平地应力、液柱压力以及孔隙压力和地层温差完全耦合作用下井底岩石的三维物理模型,借助有限元软件进行求解,研究在不同液柱... 井底待破碎岩石所处的应力状态作为影响其破碎的关键因素而直接影响着钻井效率,建立综合考虑上覆岩层压力、水平地应力、液柱压力以及孔隙压力和地层温差完全耦合作用下井底岩石的三维物理模型,借助有限元软件进行求解,研究在不同液柱压力、不同井深、不同温差以及不同渗透系数作用下井底岩石应力分布的数值解。结果表明:液柱压力、井深以及温差越大,井底表面岩石最大主应力越大;渗透系数减小,井底表面最大主应力先增大后减小;在井眼轴向方向,在距离井底表面以下一定距离之后,液柱压力和井深越大,岩石最大主应力越小;温差对岩石最大主应力没有影响。 展开更多
关键词 热孔弹塑性 井底应力 完全耦合 数值解 破碎机制
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Stress distribution and its influencing factors of bottom-hole rock in underbalanced drilling 被引量:3
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作者 ZHANG Ran LI Gen-sheng TIAN Shou-ceng 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1766-1773,共8页
The underbalanced drilling has been widely used due to its advantages of high drilling efficiency and low cost etc., especially for hard formation drilling. These advantages, however, are closely related to the stress... The underbalanced drilling has been widely used due to its advantages of high drilling efficiency and low cost etc., especially for hard formation drilling. These advantages, however, are closely related to the stress state of the bottom-hole rock; therefore, it is significant to research the stress distribution of bottom-hole rock for the correct understanding of the mechanism of rock fragmentation and high penetration rate. The stress condition of bottom-hole rock is very complicated while under the co-action of overburden pressure, horizontal in-situ stresses, drilling mud pressure, pore pressure and temperature etc. In this paper, the fully coupled simulation model is established and the effects of overburden pressure, horizontal in-situ stresses, drilling mud pressure, pore pressure and temperature on stress distribution of bottom-hole rock are studied. The research shows that: in air drilling, as the well depth increases, the more easily the bottom-hole rock is broken; the mud pressure has a great effect on the bottom hole rock. The bigger the mud pressure is, the more difficult to break the bottom-hole rock; the max principle stress of the bottom-hole increased with the increasing of mud pressure, well depth and temperature difference. The bottom-hole rock can be divided into 3 regions respectively according to the stress state, 3 direction stretch zone, 2 direction compression area and 3 direction compression zone; the corresponding fragmentation degree of difficulty is easily, normally and hardly. 展开更多
关键词 thermo-poroelastoplasticity bottom-hole rock stress fully coupled numerical solution fragmentation mechanism
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