地质出版社有限公司 中国地质科学院勘探技术研究所主办

大陆科学钻探工程技术发展动态及趋势分析

薛倩冰, 梁楠, 韩丽丽, 马莎莎, 汪凯丽. 2021. 大陆科学钻探工程技术发展动态及趋势分析. 钻探工程, 48(12): 1-6. doi: 10.12143/j.ztgc.2021.12.001
引用本文: 薛倩冰, 梁楠, 韩丽丽, 马莎莎, 汪凯丽. 2021. 大陆科学钻探工程技术发展动态及趋势分析. 钻探工程, 48(12): 1-6. doi: 10.12143/j.ztgc.2021.12.001
XUE Qianbing, LIANG Nan, HAN Lili, MA Shasha and WANG Kaili, . 2021. Development trend of continental scientific drilling technology. DRILLING ENGINEERING, 48(12): 1-6. doi: 10.12143/j.ztgc.2021.12.001
Citation: XUE Qianbing, LIANG Nan, HAN Lili, MA Shasha and WANG Kaili, . 2021. Development trend of continental scientific drilling technology. DRILLING ENGINEERING, 48(12): 1-6. doi: 10.12143/j.ztgc.2021.12.001

大陆科学钻探工程技术发展动态及趋势分析

  • 基金项目:

    中国地质科学院勘探技术研究所科研项目“大陆科学钻探井新技术发展动态前沿及发展路线研究”(编号:YB202013);国家重点研发计划项目“5000米智能地质钻探技术装备研发及应用示范”(编号:2018YFC0603400)

详细信息
    作者简介: 薛倩冰,女,汉族,1987年生,工程师,地质工程专业,硕士,主要从事钻探工艺技术研究与地质调查项目管理工作,河北省廊坊市广阳区金光道77号,913311690@qq.com。
  • 中图分类号: P634

Development trend of continental scientific drilling technology

  • 钻探是直接获取地下实物资料和提供测量通道的唯一技术方法,科学钻探是人类解决所面临的资源、灾害、环境等重大问题不可或缺的重要手段。本文简要回顾了大陆科学钻探技术发展概况,通过对大陆科学钻探新技术发展动态前沿问题及发展路线进行调研,梳理总结了大陆科学钻探工程面临的高温、高压、高地应力、井斜、取心等技术难题,并提出了以高度集成化、智能化的绿色钻探技术为研究方向的发展路线图,为大陆科学钻探工程进一步发展及组织实施提供参考。
  • 加载中
  • [1]

    贾凌霄,马冰,田黔宁,等.中美地球深部探测工作进展与对比[J].地质通报,2020,39(4):582-597.JIA Lingxiao, MA Bing, TIAN Qianning, et al. Progress and comparative study of deep earth exploration in China and the United States[J]. Geological Bulletin of China, 2020,39(4):582-597.

    [2]

    [2] 许志琴.中国大陆科学钻探工程的科学目标及初步成果[J].岩石学报,2004,20(1):1-8.XU Zhiqin. The scientific goals and investigation progresses of the Chinese Continental Scientific Drilling Project[J]. Acta Petrologica Sinica, 2004,20(1):1-8.

    [3]

    [3] 张晓西,杨经绥,张惠,等.科学钻探——深化岩石学研究的金钥匙[J].中国地质,2013,40(3):681-693.ZHANG Xiaoxi, YANG Jingsui, ZHANG Hui, et a1. Scientific drilling—The golden key to in-depth petrologic study[J]. Geology in China, 2013,40(3):681-693.

    [4]

    [4] ZHANG Xiaoxi, ZHANG Hui. Scientific drilling—to construct the telescopes that inserting to the earth interior[J]. Acta Geologica Sinica (English Edition), 2020,94(S1):87-88.

    [5]

    [5] 曹双兰,林君,杨泓渊,等.用于深部探测的地震检波器低频拓展技术[J].地球物理学进展,2012,27(5):1904-1911.

    CAO Shuanglan, LIN Jun, YANG Hongyuan, et a1. Low frequency expansion technologies applied in deep seismic explorationgeophones[J]. Progressin Geophysics,2012,27(5):1904-1911.

    [6]

    [6] 谢和平,张茹,邓建辉,等.基于“深地—地表”联动的深地科学与地灾防控技术体系初探[J].工程科学与技术,2021,53(4):1-12.

    XIE Heping, ZHANG Ru, DENG Jianhui, et a1. A preliminary study on the technical system of deep earth science and geo disaster prevention-control based on the “Deep Earth-Surface” Linkage Strategy[J]. Advanced Engineering Sciences, 2021,53(4):1-12.

    [7]

    [7] 罗飞,王大洲.中国大陆科学钻探工程的历史考察[J].自然辩证法通讯,2019,41(8):71-80.

    LUO Fei, WANG Dazhou. A survey of the history of the China Continental Scientific Drilling Project[J]. Journal of Dialectics of Nature, 2019,41(8):71-80.

    [8]

    [8] 郭慧,李亚萍,王学明,等.国际大洋科学钻探计划简介[J].中国地质,2018,45(3):638-639.GUO Hui, LI Yaping, WANG Xueming, et a1. A brief introduction to the International Ocean Drilling Program[J]. Geology in China, 2018,45(3):638-639.

    [9]

    [9] 张伟.国际大陆科学钻探计划(ICDP)实施十年的进展[J].探矿工程(岩土钻掘工程),2005,32(S1):26-29.ZHANG Wei. The progress of the ten years of International Continental Scientific Drilling Program[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2005,32(S1):26-29.

    [10]

    [10] 许志琴,杨文采,杨经绥,等.中国大陆科学钻探的过去、现在和未来——纪念中国大陆科学钻探实施15周年、国际大陆科学钻探委员会成立20周年[J].地质学报,2016,90(9):2109-2122.XU Zhiqin, YANG Wencai, YANG Jingsui, et al. 15 Years of hardship and struggle history and the prospects for the future of the Chinese Continental Scientific Drilling Program(CCSD):In Memory of the 15 Year Anniversary of CCSD and 20 Year Anniversary of ICDP[J]. Acta Geologica Sinica, 2016,90(9): 2109-2122.

    [11]

    [11] 王成善,冯志强,吴河勇,等.中国白垩纪大陆科学钻探工程:松科一井科学钻探工程的实施与初步进展[J].地质学报,2008,82(1):9-20.

    WANG Chengshan, FENG Zhiqiang, WU Heyong, et al.Preliminary achievement of the Chinese Cretaceous Continental Scientific Drilling Project-SK-I[J]. Acta Geologica Sinica,2008,82(1):9-20.

    [12]

    [12] 侯贺晟,王成善,张交东,等.松辽盆地大陆深部科学钻探地球科学研究进展[J].中国地质,2018,45(4):641-657.

    HOU Hesheng, WANG Chengshan, ZHANG Jiaodong, et al. Deep continental scientific drilling engineering in Songliao Basin:Resource discovery and progress in earth science research[J]. Geology in China, 2018,45(4):641-657.

    [13]

    [13] 许志琴,杨经绥,张泽明,等.中国大陆科学钻探终孔及研究进展[J].中国地质,2005,32(2):177-183.XU Zhiqin, YANG Jingsui, ZHANG Zeming, et al. Completion and achievement of the Chinese Continental Scientific Drilling[J]. Geology in China, 2005,32(2):177-l83.

    [14]

    [14] Youhong Sun, Feiyu Zhang, Qingyan Wang, et al. Application of “Crust 1” 10k ultra-deep scientific drilling rig in Songliao Basin Drilling Project (CCSD-SKII)[J]. Journal of Petroleum Science and Engineering , 2016,145:222-229.

    [15]

    [15] 张金昌,谢文卫.科学超深井钻探技术国内外现状[J].地质学报,2010,84(6):887-894.ZHANG Jinchang,XIE Wenwei. Status of scientific drilling technology for ultra-deep well[J]. Acta Geologica Sinica, 2010,84(6):887-894.

    [16]

    [16] 王达,张伟,贾军.特深科学钻探的关键问题[J].科学通报,2018,63(26):2698-2706.WANG Da, ZHANG Wei, JIA Jun. The key problems of ul-tra-deep drilling engineering[J]. Chinese Science Bulletin, 2018,63(26):2698-2706.

    [17]

    [17] 尹国庆,梁艺苇,琚岩,等.石油钻井中影响井壁稳定性因素分析[J].长春工程学院学报(自然科学版),20l6,17(3):89-93.YIN Guoqing, LIANG Yiwei, JU Yan, et a1. The affecting factors analysis of borehole wall stability in petroleum drilling[J]. Journal of Changchun Institute of Technology (Natural Science Edition), 2016,17(3):89-93.

    [18]

    [18] 张伟.我国“十二五”期间的科学钻探活动[J].探矿工程(岩土钻掘工程),2016,43(4):18-23.ZHANG Wei. Scientific drilling activities of China during the “12th Five-year Plan”period[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2016,43(4):18-23.

    [19]

    [19] 朱永宜,王稳石,张恒春,等.我国大陆科学钻探工程实施概况及其取心钻进技术体系[J].地质学报,2018,92(10):1971-1984.

    ZHU Yongyi, WANG Wenshi, ZHANG Hengchun, et al. Implementation overview of Chinese Continental Scientific Drilling(CCSD) Project and technical systems of core boring[J]. Acta Geologica Sinica, 2018,92(10):1971-1984.

    [20]

    [20] 李玮,李梅,白云龙,等.高温高压下钻头破岩及磨损规律研究[J].中国煤炭地质,2020,32(11):73-78.LI Wei, LI Mei, BAI Yunlong, et al. Study on drill bit rock cutting and wearing pattern under high temperature and pressure[J]. Coal Geology of China, 2020,32(11):73-78.

    [21]

    [21] 李韶利,宋韶光.松科2井超高温水泥浆固井技术[J].钻井液与完井液,2018,35(2):92-97.

    LI Shaoli, SONG Shaoguang. Cementing technology for ultra-high temperature Well Songke-2[J]. Drilling Fluid & Completion Fluid, 2018,35(2):92-97.

    [22]

    [22] 瞿雪姣,杨立伟,薛璇,等.松辽盆地白垩系大陆科学钻探松科2井:井段温度、地层压力预测[J].地学前缘,2017,24(1):257-264.QU Xuejiao, YANG Liwei, XUE Xuan, et al. Prediction of the hottom hole geotemperature, formation pressure and formation fracture pressure of the Continental Scientific Drilling of Cretaceous Songliao Basin (SK2)[J]. Earth Science Frontiers, 2017,24(1):257-264.

    [23]

    [23] 梁健,李鑫淼,王汉宝,等.连续循环系统在科学超深井中的需求分析[J].探矿工程(岩土钻掘工程),2015,42(4):1-5.LIANG Jian, LI Xinmaio, WANG Hanbao, et al. Requirement analysis on continuous circulation system for scientific ultra-deep drilling[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling ), 2015,42(4):1-5.

    [24]

    [24] Engeser B, Wohlgemuth L. Das kontinentale Tiefbohr Programm der Bundesrepublik Deutschland: KTB-Bohrtechnische Dokumentation[R]. Stuttgart, Hannover: Niedersächsisches Landesamt für Bodenforschung, 1996:4-95.

    [25]

    [25] 王达,张伟,汤松然.俄罗斯科学深钻技术概况和特点——技术考察系列报道之一[J].探矿工程,1995(1):53-55,57.WANG Da, ZHANG Wei, TANG Songran. Russian scientific deep drilling teehnology overview and features: Technical investigation of a series of repots[J]. Exploration Engineering, 1995(1):53-55,57.

    [26]

    [26] 薛倩冰,张金昌.智能化自动化钻探技术与装备发展概述[J].探矿工程(岩土钻掘工程),2020,47(4):9-14.XUE Qianbing, ZHANG Jinchang. Advances in intelligent automatic drilling technologies and equipment[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2020,47 (4):9-14.

    [27]

    [27] 冉恒谦,梁健,梁楠,等.定向钻井技术引领,聚焦深地深海探测——勘探技术所“十三五”科技创新回顾及“十四五”业务展望[J].钻探工程,2021,48(1):7-14.RAN Hengqian, LIANG Jian, LIANG Nan, et al. Directional drilling technology takes lead with focus on deep earth and deep sea exploration—Review of science and technology innovation by Institute of Exploration Techniques, CAGS during the 13th FiveYear Plan and an outlook to the 14th FiveYear Plan[J]. Drilling Engineering, 2021,48(1):7-14.

  • 加载中
计量
  • 文章访问数:  2047
  • PDF下载数:  243
  • 施引文献:  0
出版历程
收稿日期:  2021-11-07
修回日期:  2021-12-07

目录