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基于ANSYS-LSDYNA的围压下粒子冲击破岩规律
引用本文:颜廷俊,姜美旭,张杨,聂炳林. 基于ANSYS-LSDYNA的围压下粒子冲击破岩规律[J]. 断块油气田, 2012, 19(2): 240-243
作者姓名:颜廷俊  姜美旭  张杨  聂炳林
作者单位:1. 北京化工大学机电工程学院,北京,100029
2. 中国石化海上石油工程技术检测中心,山东东营,257001
基金项目:中石化先导项目“粒子冲击钻井技术前瞻性研究”(P10037)
摘    要:粒子冲击钻井是一种以粒子冲击破岩为主的新型钻井技术,在仿真分析中岩石的围压作用对模拟岩石真实的受力状态和力学响应至关重要。利用ANSYS-LSDYNA具有的"隐式-显式"序列求解方法,将围压作用简化为岩石内部的预应力效应,分析了岩石在围压作用下的冲击损伤破坏演化过程,进一步研究了有、无围压作用下粒子不同速度冲击破岩的规律。仿真结果表明:有围压作用的岩石破碎体积明显小于无围压作用的岩石破碎体积;随粒子入射速度的增加,岩石的破碎体积呈线性增大。

关 键 词:围压  粒子冲击钻井  隐式显式分析  ANSYS

Study on rock breaking for particle impacting with confining pressure based on ANSYS-LSDYNA
Yan Tingjun , Jiang Meixn , Zhang Yang , Nie Binglin. Study on rock breaking for particle impacting with confining pressure based on ANSYS-LSDYNA[J]. Fault-Block Oil & Gas Field, 2012, 19(2): 240-243
Authors:Yan Tingjun    Jiang Meixn    Zhang Yang    Nie Binglin
Affiliation:1.College of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing 100029,China; 2.Technological Inspection Station of Offshore Petroleum Engineering, SINOPEC, Dongying 257001, China)
Abstract:Particle impact drilling is a new drilling technology which is dominated by particle impacting. The problem of rock confining pressure is very significant to simulate real stress state and mechanic, al response of rock. Confining pressure was simplified as mck pre-stressing effect by "implicit-explicit" sequence solution of ANSYS. And, damage evolution process of impacting rock with confining pressure was analyzed. Farther, the law that single particle impacted and destrnyed rock witlv'without confining pressure at different velocity was studied. Simulation resuhs indicated that the volumetric h'acture of rock with confining pressure was obviously less than that without confining pressure. And the rock w)lumetric fracture was linearly increased with the increase of partMe incidence velocity.
Keywords:confining pressure  particle impact drilling  implicit-explicit analysis  ANSYS
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