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《中国工程科学》 >> 2021年 第23卷 第6期 doi: 10.15302/J-SSCAE-2021.06.006

深部矿产和地热资源共采战略研究

1. 北京科技大学土木与资源工程学院,北京 100083;

2. 北京科技大学金属矿山高效开采与安全教育部重点实验室, 北京 100083;

3. 西藏自治区地质矿产勘察开发局,拉萨 850032;

4. 深圳大学土木与交通工程学院,广东深圳 518061;

5. 中国地质科学院矿产资源研究所,北京 100037;

6. 大连理工大学土木工程学院, 辽宁大连 116023;

7. 北京中煤矿山工程有限公司,北京 100013
 

资助项目 :中国工程院咨询项目“深部矿产和地热资源共采战略研究”(2019-XZ-16) 收稿日期: 2021-10-11 修回日期: 2021-11-23 发布日期: 2021-12-09

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摘要

深部矿产和地热资源共采是实现深部采矿可持续发展的重要举措,也为深部高温岩层地热开采提供了全新技术手段。 本文分析了深部矿产和地热资源共采的重要价值,梳理了国内外地热资源的开发利用现状,总结了我国在深部矿产和地热资 源共采方面的基础研究进展;在剖析深部矿产和地热资源共采面临的技术与管理挑战的基础上,论证形成了实施综合开发利 用亟需的技术体系构成,涉及深部矿产资源与深部地热开发利用调查及前景研判、高温坚硬岩层地下巷道与硐室掘进及建造、 深部矿产资源开采系统和地热开发系统“共建 – 共存 – 共用”的关键理论与技术体系、深部高温岩层地热能交换和输送理论 与技术。研究提出了地质勘查、科技创新、扶持政策、顶层规划与科研示范基地等方面的发展建议,以期为我国矿业和地热 产业可持续、高质量发展提供参考。

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参考文献

[ 1 ] Cai M F, Brown E T. Challenges in the mining and utilization of deep mineral resources [J]. Engineering, 2017, 3(4): 432–433. 链接1

[ 2 ] 王琼杰. 如何实现深部开采技术的“弯道超车”?——访中国 工程院院士、北京科技大学教授蔡美峰 [N]. 中国矿业报, 2017- 02-04(03). Wang Q J. How to realize “Corner overtaking” of deep mining technology? — Interview with Cai Meifeng, academician from the Chinese Academy of Engineering and professor from the University of Science and Technology Beijing [N]. China Mining News, 2017-02-04(03).
Wang Q J. How to realize “Corner overtaking” of deep mining technology? — Interview with Cai Meifeng, academician from the Chinese Academy of Engineering and professor from the University of Science and Technology Beijing [N]. China Mining News, 2017-02-04(03). Chinese.

[ 3 ] 蔡美峰, 薛鼎龙, 任奋华. 金属矿深部开采现状与发展战略 [J]. 工程科学学报, 2019, 41(4): 417–426. Cai M F, Xue D L, Ren F H. Current status and development strategy of metal mines [J]. Chinese Journal of Engineering, 2019, 41(4): 417–426.
Cai M F, Xue D L, Ren F H. Current status and development strategy of metal mines [J]. Chinese Journal of Engineering, 2019, 41(4): 417–426. Chinese. 链接1

[ 4 ] 马春红. 中国工程院院士蔡美峰: 热交换技术将深刻改变深部 采矿 [N]. 中国黄金报, 2018-11-13(02). Ma C H. Cai Meifeng, academician of Chinese Academy of Engineering: Heat exchange technology will profoundly change deep mining [N]. China Gold News, 2018-11-13(02).
Ma C H. Cai Meifeng, academician of Chinese Academy of Engineering: Heat exchange technology will profoundly change deep mining [N]. China Gold News, 2018-11-13(02). Chinese.

[ 5 ] Cai M F, Li P, Tan W H, et al. Key engineering technologies to achieve green, intelligent, and sustainable development of deep metal mines in China [EB/OL]. (2021-08-16)[2021-10-09]. https:// doi.org/10.1016/j.eng.2021.07.010. 链接1

[ 6 ] 滕玲. 院士蔡美峰解析未来矿业三大主题 [J]. 地球, 2018 (12): 40–43. Teng L. Academician Cai Meifeng analyzes three major themes of future mining industry [J]. Earth, 2018 (12): 40–43.
Teng L. Academician Cai Meifeng analyzes three major themes of future mining industry [J]. Earth, 2018 (12): 40–43. Chinese. 链接1

[ 7 ] 蔡美峰, 谭文辉, 吴星辉, 等. 金属矿山深部智能开采现状及其 发展策略 [EB/OL]. (2021-09-13)[2021-10-09]. https://kns.cnki. net/kcms/detail/43.1238.TG.20210913.1149.001.html. Cai M F, Tan W H, Wu X H, et al. Current situation and development strategy of deep intelligent mining in metal mines [EB/OL]. (2021- 09-13)[2021-10-09]. https://kns.cnki.net/kcms/detail/43.1238. TG.20210913.1149.001.html.
Cai M F, Tan W H, Wu X H, et al. Current situation and development strategy of deep intelligent mining in metal mines [EB/OL]. (2021-09-13)[2021-10-09]. https://kns.cnki.net/kcms/detail/43.1238. TG.20210913.1149.001.html. Chinese. 链接1

[ 8 ] 石乃敏, 潘爱民, 沈雁醒. 某金属矿山深部开采人工制冷降温技 术方案分析 [J]. 中国矿业, 2016, 25(7): 161–165. Shi N M, Pan A M, Shen Y X. Analysis of the technical scheme of artificial cooling in a deep mining metal mine [J]. China Mining Magazine, 2016, 25(7): 161–165.
Shi N M, Pan A M, Shen Y X. Analysis of the technical scheme of artificial cooling in a deep mining metal mine [J]. China Mining Magazine, 2016, 25(7): 161–165. Chinese.

[ 9 ] 程强, 李颖, 贺宇慧. 蔡美峰: 深部矿产和地热共采可实现双赢 [N]. 中国石化报, 2018-12-10(01). Cheng Q, Li Y, He Y H. Cai Meifeng: Co-mining of deep minerals and geothermal can achieve win-win results [N]. China Petrochemical News, 2018-12-10(01).
Cheng Q, Li Y, He Y H. Cai Meifeng: Co-mining of deep minerals and geothermal can achieve win-win results [N]. China Petrochemical News, 2018-12-10(01). Chinese.

[10] 唐春安, 赵坚, 王思敬. 基于开挖技术的增强型地热系统EGS-E 概念模型 [C]. 北京: 中国岩石力学与工程学会, 2018. Tang, C A, Zhao J, Wang S J. Enhanced geothermal system based on excavation: EGS-E conceptual model [C]. Beijing: Chinese Society for Rock Mechanics and Engineering, 2018.
Tang, C A, Zhao J, Wang S J. Enhanced geothermal system based on excavation: EGS-E conceptual model [C]. Beijing: Chinese Society for Rock Mechanics and Engineering, 2018. Chinese.

[11] Zhao J, Tang C A, Wang S J. Excavation based enhanced geothermal system (EGS-E): Introduction to a new concept [J]. Geomechanics and Geophysics for Geo-Energy and GeoResources, 2020, 6(1): 1–7. 链接1

[12] 亢方超, 唐春安. 基于开挖的增强型地热系统概述 [J]. 地学前 缘, 2020, 27(1): 185–193. Kang F C, Tang C A. Overview of enhanced geothermal system (EGS) based on excavation in China [J]. Earth Science Frontiers, 2020, 27(1): 185–193.
Kang F C, Tang C A. Overview of enhanced geothermal system (EGS) based on excavation in China [J]. Earth Science Frontiers, 2020, 27(1): 185–193. Chinese. 链接1

[13] 许天福, 袁益龙, 姜振蛟, 等. 干热岩资源和增强型地热工程: 国际经验和我国展望 [J]. 吉林大学学报(地球科学版), 2016, 46(4): 1139–1152. Xu T F, Yuan Y L, Jiang Z J, et al. Hot dry rock and enhanced geothermal engineering: International experience and China prospect [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(4): 1139–1152.
Xu T F, Yuan Y L, Jiang Z J, et al. Hot dry rock and enhanced geothermal engineering: International experience and China prospect [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(4): 1139–1152. Chinese. 链接1

[14] 毛翔, 国殿斌, 罗璐, 等. 世界干热岩地热资源开发进展与地质 背景分析 [J]. 地质论评, 2019, 65(6): 1462–1472. Mao X, Guo D B, Luo L, et al. The global development process of hot dry rock (enhanced geothermal system) and its geological background [J]. Geological Review, 2019, 65(6): 1462–1472.
Mao X, Guo D B, Luo L, et al. The global development process of hot dry rock (enhanced geothermal system) and its geological background [J]. Geological Review, 2019, 65(6): 1462–1472. Chinese. 链接1

[15] 黄嘉超, 李天舒, 谷雪曦. 国际地热利用发展形势对中国的启发 [J]. 石化技术, 2020, 27(9): 252–253. Huang J C, Li T S, Gu X X. Enlightenment of international geothermal utilization development situation to China [J]. Petrochemical Industry Technology, 2020, 27(9): 252–253.
Huang J C, Li T S, Gu X X. Enlightenment of international geothermal utilization development situation to China [J]. Petrochemical Industry Technology, 2020, 27(9): 252–253. Chinese. 链接1

[16] 本刊讯. 《中国地热能发展报告(2018)》白皮书发布 [J]. 地质装 备, 2019, 20(2): 3–6. This Newsletter. The white paper China geothermal energy development report (2018) was released [J]. Equipment for Geotechnical Engineering, 2019, 20(2): 3–6.
This Newsletter. The white paper China geothermal energy development report (2018) was released [J]. Equipment for Geotechnical Engineering, 2019, 20(2): 3–6. Chinese. 链接1

[17] 王转转, 欧成华, 王红印, 等. 国内地热资源类型特征及其开发 利用进展 [J]. 水利水电技术, 2019, 50(6): 187–195. Wang Z Z, Ou C H, Wang H Y, et al. The characteristics and development of geothermal resources in China [J]. Water Resources and Hydropower Engineering, 2019, 50(6): 187–195.
Wang Z Z, Ou C H, Wang H Y, et al. The characteristics and development of geothermal resources in China [J]. Water Resources and Hydropower Engineering, 2019, 50(6): 187–195. Chinese. 链接1

[18] 陆晓如. 地热发电, 温度还不够——专访中国工程院院士多吉 [J]. 中国石油石化, 2019, 18: 17–19. Lu X R. Geothermal power generation, the temperature is not enough — An exclusive interview with Duo Ji, academician of the Chinese Academy of Engineering [J]. China Petrochem, 2019, 18: 17–19.
Lu X R. Geothermal power generation, the temperature is not enough — An exclusive interview with Duo Ji, academician of the Chinese Academy of Engineering [J]. China Petrochem, 2019, 18: 17–19. Chinese. 链接1

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