QI Gong, LI Yang, QI Xiaofeng, GAO Pengju and DONG Xiangyu, . 2024. Disscusion on drilling technology for bedrock thermal reservoir in Xiong’an New Area. DRILLING ENGINEERING, 51(1): 126-130. doi: 10.12143/j.ztgc.2024.01.017
Citation: |
QI Gong, LI Yang, QI Xiaofeng, GAO Pengju and DONG Xiangyu, . 2024. Disscusion on drilling technology for bedrock thermal reservoir in Xiong’an New Area. DRILLING ENGINEERING, 51(1): 126-130. doi: 10.12143/j.ztgc.2024.01.017
|
Disscusion on drilling technology for bedrock thermal reservoir in Xiong’an New Area
-
Abstract
Aiming at the difficulties exist in thermal reservoir drilling in bedrock of Xiong’an New Area such as drilling in weathered crust, plugging severe formation lost and coring at bedrock, an effective solution for drilling in bedrock thermal reservoir is proposed including small diameter exploration wells, effectively mud plugging using packers and borrowed the principle of diamond full hole coring tool technology through the analysis of the geothermal geological conditions and lithological characteristics of Niutuozhen Geothermal Field, Rongcheng Geothermal Field and Gaoyang Geothermal Field.
-
-
References
[1]
|
汪集暘,马伟斌,龚宇烈.地热利用技术(可再生能源丛书)[M].北京:化学工业出版社,2005.WANG Jiyang, MA Weibin, GONG Yulie. Geothermal Utilization Technology (Renewable Energy Series)[M]. Beijing: Chemical Industry Press, 2005.
Google Scholar
|
[2] |
[2] 王贵玲,李郡,吴爱民,等.河北容城凸起区热储层新层系——高于庄组热储特征研究[J].地球学报,2018,39(7):533-541.
Google Scholar
WANG Guiling, LI Jun, WU Aimin, et al. A study of the thermal storage characteristics of Gaoyuzhuang Formation: A new layer system of thermal reservoir in Rongcheng Uplift Area of Hebei Province[J]. Acta Geoscientiea Sinica, 2018,39(5):533-541.
Google Scholar
|
[3] |
[3] 马峰,王贵玲,张薇,等.雄安新区容城地热田热储空间结构及资源潜力[J].地质学报,2020,94(7):1981-1990.
Google Scholar
MA Feng, WANG Guiling, ZHANG Wei, et al. Structure of geothermal reservoirs and resource potential in the Rongcheng Geothermal Field in Xiong’an New Area[J]. Acta Geologica Sinica, 2020,94(7):1981-1990.
Google Scholar
|
[4] |
[4] 卢予北.地热井常见主要问题分析与研究[J].探矿工程(岩土钻掘工程),2004,31(2):43-47.
Google Scholar
LU Yubei. Analyses and research on frequently occurred problems in geothermal well[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2004,31(2):43-47.
Google Scholar
|
[5] |
[5] 史秀辉.地热井钻完井施工工艺措施深讨[J].中国石油和化工标准与质量,2022,42(13):3.SHI Xiuhui. Deep discussion on construction technology measures for geothermal well drilling and completion[J]. China Petroleum and Chemical Standards and Quality, 2022,42(13):3.
Google Scholar
|
[6] |
[6] 韦利.地热井钻井施工技术研究[J].石化技术,2017,24(10):1.WEI Li. Research on geothermal well drilling construction technology[J]. Petrochemical Technology, 2017,24(10):1.
Google Scholar
|
[7] |
[7] 高鹏举,董向宇,刘凡柏,等.XD-40型钻机在雄安新区地热勘探井施工中的应用[J].钻探工程,2021,48(8):72-77.
Google Scholar
GAO Pengju, DONG Xiangyu, LIU Fanbai, et al. Application of XD-40 drilling rig in geothermal exploration well construction in Xiong’an New Area[J]. Drilling Engineering, 2021,48(8):72-77.
Google Scholar
|
[8] |
[8] 高鹏举,董向宇,马峰,等.雄安新区D15地热勘探井钻探施工技术[J].钻探工程,2021,48(3):106-112.
Google Scholar
GAO Pengju, DONG Xiangyu, MA Feng, et al. Drilling technology for D15 geothermal exploration well in Xiong’an New Area[J]. Drilling Engineering, 2021,48(3):106-112.
Google Scholar
|
[9] |
[9] 伍晓龙,杜垚森,王庆晓,等.冀中坳陷区域JZ04地热勘探井施工技术[J].钻探工程,2023,50(1):107-114.
Google Scholar
WU Xiaolong, DU Yaosen, WANG Qingxiao, et al. Construction technology of JZ04 geothermal exploration well in Jizhong Depression[J]. Drilling Engineering, 2023,50(1):107-114.
Google Scholar
|
[10] |
[10] 刘文新,张长茂,鲍洪智,等.YR-3井井身井管结构设计及固井技术[J].探矿工程(岩土钻掘工程),2012,39(6):35-38.
Google Scholar
LIU Wenxin, ZHANG Changmao, BAO Hongzhi, et al. Structural design and cementing technology of YR-3 well casing[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2012,39(6):35-38.
Google Scholar
|
[11] |
[11] 四川石油钻采科技有限公司.川7-4型常规取心工具使用说明书[K].Sichuan Petroleum Drilling and Production Technology Co., Ltd. Chuan 7-4 conventional coring tool user manual[K].
Google Scholar
|
[12] |
[12] 陈立,刘彬,李伟成,等.川7-5型(不投球)取心工具[J].石油科技论坛,2011,30(2):2.CHEN Li, LIU Bin, LI Weicheng, et al. Chuan 7-5 type (non throwing) coring tool[J]. Petroleum Technology Forum, 2011,30(2):2.
Google Scholar
|
[13] |
[13] 施山山,闫家,李宽,等.破碎地层取心钻具研究现状及展望[J].探矿工程(岩土钻掘工程),2020,47(7):56-61.
Google Scholar
SHI Shanshan, YAN Jia, LI Kuan, et al. Research status and prospects of coring tools for broken formation[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2020,47(7):56-61.
Google Scholar
|
[14] |
[14] 张强,战启帅,张文良,等.页岩气地质调查井小口径绳索取心钻探技术分析[J].钻探工程,2022,49(5):72-79.
Google Scholar
ZHANG Qiang, ZHAN Qishuai, ZHANG Wenliang, et al. Application of small diameter wire-line core drilling in shale gas geological wells[J]. Drilling Engineering, 2022,49(5):72-79.
Google Scholar
|
[15] |
[15] DZ/T 0260—2014,地热钻探技术规程[S].DZ/T 0260—2014, Technical regulations for geothermal drilling[S].
Google Scholar
|
-
-
Access History