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公开(公告)号:US20200300746A1
公开(公告)日:2020-09-24
申请号:US16604518
申请日:2018-11-26
Applicant: SouthWest Petroleum University
Inventor: Tianshou MA , Nian PENG , Ping CHEN , Xingming WANG , Qiang WANG , Jianhong FU
Abstract: A physical simulation and calibration device and method for formation pressure testing. The device has a rock core arranged in a rock core clamper, a confining pressure simulation module, formation pressure simulation module, annular pressure simulation module, suction system, thrust force simulation module and drive control system. The thrust force simulation module has a thrust rod which penetrates through a cavity wall on one side of the clamper. The front end of the thrust rod has a simulation probe. The suction system is connected to the thrust rod. The confining pressure simulation module, formation pressure simulation module, annular pressure simulation module, thrust force simulation module and suction system are all connected with the drive control system. The device and method simulate a physical environment of formation pressure testing to achieve physical simulation of formation pressure testing. A formation pressure tester can be corrected and calibrated.
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2.
公开(公告)号:US20180100352A1
公开(公告)日:2018-04-12
申请号:US15323104
申请日:2015-06-23
Applicant: SOUTHWEST PETROLEUM UNIVERSITY
Inventor: Wei LI , Hongxiang LEI , Qingyou LIU , Shihong XIAO , Xu SI , Tieshan ZHANG , Qing TU , Xiao TAN , Fanyao JIN , Xingming WANG , Yuan ZHONG , Hang LI , Jianchuan WU , Dengwei LI
IPC: E21B7/06
Abstract: Disclosed is a rotation guidance apparatus belonging to the technical field of oil drilling equipment. An end part of a lower connector (3) has a ball-socketed ball-joint rod (12), and a drill bit (1) is connected to the ball-socketed ball-joint rod (12); several circumferentially and evenly distributed piston holes are provided in a side wall of the lower connector (3), a piston matches each piston hole, and a piston rod (11) connected to the piston is movably connected to the ball-socketed ball-joint rod (12); and a eccentrically-placed valve core (17) is connected to a controller provided in an upper connector (4), a working face of the eccentrically-placed valve core (17) is opposite to the piston holes, and rotation of the eccentrically-placed valve core (17) makes the pistons in the piston holes move to control the rotation guidance of the ball-socketed ball-joint rod (12).
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