岩心钻探振动拔管器的研制及在卡埋钻处理中的应用
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贵州省地质矿产勘查开发局一一二地质大队,贵州 安顺 561000

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P634.8

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贵州省科技计划项目“贵州省岩溶地区复杂地层岩心钻探关键技术难题综合研究”(编号:黔科合支撑[2023]一般173号);贵州省地矿局地质科研项目“贵州省优势矿产资源勘查岩心钻探关键技术难题综合研究”(编号:黔地矿科合[2022]4号)、“地质勘查岩心钻探新型式钻机的引进及改良设计研究”(编号:黔地矿科合[2023]6号);贵州省地矿局科技创新人才团队“贵州省优势矿产资源深部钻探技术科技创新人才团队”(编号:黔地矿科合[2022]TD002号)


Development of vibration pipe puller and its application in dealing with stuck and buried drilling in core drilling
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112 Geological Team, Bureau of Geology and Mineral Exploration and Development of Guizhou Province, Anshun Guizhou 561000, China

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    摘要:

    卡埋钻事故是矿产资源勘查岩心钻探最难处理的事故,传统的强拉、强顶、强扭、反丝钻杆反取等处理方式,处理成功率均极低,且程序繁琐,耗时、耗力、耗成本。为解决卡埋钻事故处理难题,研制了振动拔管器。使用时,将该机具安装在孔口钻杆上,通电即产生高频高压振动,然后用钻机主卷扬向上提拉振动拔管器+钻杆连合体,通过提拔+振动联合作用,实现解除卡阻。振动拔管器坚固耐用、操作方便、成本低廉,在钻探现场应用处理卡埋钻事故数十次,成功率达90%以上,具有极大的推广应用价值。

    Abstract:

    The stuck drill accident is the most difficult accident to handle in mineral resource exploration core drilling. Traditional methods such as strong pulling, strong jacking, strong twisting, and reverse drilling of drill rods have extremely low success rates, and the program is cumbersome, time-consuming, labor-intensive, and cost-effective. To solve the problem of handling stuck drilling accidents, a vibration pipe extractor has been developed. When in use, the machine is installed on the drill pipe at the orifice, and when powered on, high-frequency and high-voltage vibration is generated. Then, the main winch of the drilling rig is used to pull up the vibration pipe puller+drill pipe combination, and through the combined effect of lifting+vibration, the blockage is relieved. The vibration pipe extractor is sturdy, durable, easy to operate, and cost-effective. It has been applied to deal with dozens of stuck drilling accidents on drilling sites, with a success rate of over 90%, and has significant promotion value.

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宋继伟,冉飞,田鹏辉,等.岩心钻探振动拔管器的研制及在卡埋钻处理中的应用[J].钻探工程,2024,51(S1):187-190.
SONG Jiwei, RAN Fei, TIAN Penghui, et al. Development of vibration pipe puller and its application in dealing with stuck and buried drilling in core drilling[J]. Drilling Engineering, 2024,51(S1):187-190.

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  • 收稿日期:2023-08-28
  • 最后修改日期:2023-09-26
  • 录用日期:2024-05-08
  • 在线发布日期: 2024-11-08
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