2017 Vol. 44, No. 6
Article Contents

WANG Guiling, ZHANG Wei, LIN Wenjing, LIU Feng, ZHU Xi, LIU Yanguang, LI jun. 2017. Research on formation mode and development potential of geothermal resources in Beijing-Tianjin-Hebei region[J]. Geology in China, 44(6): 1074-1085. doi: 10.12029/gc20170603
Citation: WANG Guiling, ZHANG Wei, LIN Wenjing, LIU Feng, ZHU Xi, LIU Yanguang, LI jun. 2017. Research on formation mode and development potential of geothermal resources in Beijing-Tianjin-Hebei region[J]. Geology in China, 44(6): 1074-1085. doi: 10.12029/gc20170603

Research on formation mode and development potential of geothermal resources in Beijing-Tianjin-Hebei region

    Fund Project: Supported by National Natural Science Foundation of China (No. 41672249 and No. 41402231), Hydrogeological Environment Geology Institute Foundation of Chinese Academy of Geological Sciences (No. SK201501) and China Geological Survey Program (No. DD20160190)
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  • Author Bio: WANG Guiling, male, born in 1962, senior researcher, majors in geothermal resources evaluation biomedical signal processing, utilization of geothermal water resources at deep crust; E-mail: guilingw@163.com
  • Haze in Beijing-Tianjin-Hebei region is relatively heavy; at the same time, this region is rich in geothermal resources. The development of geothermal resources can contribute to the energy structure adjustment and the control of haze in that region. In this paper, based on the analysis of the fracture, strata, terrestrial heat flow and geothermal gradient of Beijing-Tianjin-Hebei region, the authors summed up the formation mode and hosting conditions of convection geothermal and conductive geothermal resources respectively. The quantity, exploitation situation and the development potential of geothermal resources were also calculated. The result shows that geothermal resource reserves are equivalent to about 138.3 billion tons of standard coal, and heat in geothermal fluid of the local region amounts to about 11 million tons of standard coal. Nevertheless, the exploitation quantity is only equivalent to about 10% of the total resources, and hence the potential for geothermal resources development and utilization is huge.

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  • Bin Dezhi, Liu Jiurong, Wang Xiaoling. 2002. Geothermal resources in Beijing[C]//Beijing Geothermal International Symposium (in Chinese with English abstract).

    Google Scholar

    Chen Moxiang, Wang Jiyang. 1994. Geothermal Resources in China:Formation Characteristics and Potential Assessment[M]. Beijing:Sciences Press, 1-39 (in Chinese with English abstract).

    Google Scholar

    Chen Moxiang. 1988. Geothermal Resources in North China[M]. Beijing:Science Press, 1988:1-214 (in Chinese).

    Google Scholar

    Cui Baole. 2010. Study on the development of hot spring tourism in Bazhou in the the Beijing-Tianjin-Hebei economic integration process[C]//Comprehensive Docking in the Same City and the Beijing-Tianjin Corridor Economic Integration Academic Conference (in Chinese).

    Google Scholar

    Fang Lianyu, Li Jun, Kang Puqing. 2015. Report of geothermal resources evaluation and regionalization in Hebei Province[R]//HengShui, The Third Party of Hydrogeology and Engineering Geology, Hebei Bureau of Geology and Mineral Investigation. 6.10.(in Chinese)

    Google Scholar

    Gong Yuling, Wang Liangshu, Liu Shaowen, Ye Tengfei. 2011.Thermal structure and thermal evolution of the Bohai Basin in Eastern China.25-42 (in Chinese).http://onlinelibrary.wiley.com/doi/10.1002/gj.2693/abstract

    Google Scholar

    Hu Shengbiao, He Lijuan, Wang Jiyang. 2001. Compilation of heat flow data in the China continental area (3rd edition)[J]. Chinese Journal of Geophysics. 44 (5):611-626 (in Chinese with English abstract).

    Google Scholar

    Jiang Ling. 2015. Energy Consumption Structure and Carbon Footprint Analysis of Beijing-Tianjin-Hebei[D]. Tianjin:Tianjin University. (in Chinese with English abstract).https://www.researchgate.net/publication/313488760_Decomposition_Analysis_of_Energy_Efficiency_in_China%27s_Beijing-Tianjin-Hebei_Region

    Google Scholar

    Li Gongke, Wang Weixing, Li Hong, Yang Fengtian, Wang Linhai, Fang Wanling. 2014. Temperature distribution and controlling factors of the Tangquan geothermal field in Hebei Province[J]. Geology in China, 41(6):2099-2109(in Chinese with English abstract).

    Google Scholar

    Li Ningbo, Yang Junwei, Yu yuan, Li Xiang, Ke bolin. 2017.Combination with development and innovation for efficient use of "Two Geothermal"in Beijing-Taijin-Hebei economic zones[J]. Urban Geology, 12(1):1-4 (in Chinese with English abstract).

    Google Scholar

    Lin Li, Gao Baozhu, Ruan Chuanxia. 2014. Report of geothermal resources evaluation and regionalization in Tianjin[R]//Tianjin, Tianjin Geothermal Exploration and Development-Designing Institute, 10 (in Chinese).

    Google Scholar

    Lin Li, Zhao Sumin, Wang Xinyi. 2006. Utilization state and protection project in Tianjin Geothermal Area[J]. Editorial Board of Journal of HPU (Nature Science), 25(2):105-110(in Chinese with English abstract).

    Google Scholar

    Lin Wenjing, Liu Zhiming, Wang Wanli, Wang Wanli. 2013. The assessment of geothermal resources potential of China[J]. Geology in China, 40 (1):312-320(in Chinese with English abstract).

    Google Scholar

    Liu Jie, Song Meiyu, Tian Guanghui. 2012. Discussion on the orebearing characters of the Jiaoyuan Fault in Songxian County, Henan Province[J]. Geological Survey and Research, 67-73 (in Chinese with English abstract).

    Google Scholar

    Liu Kai, Liu Yingchao, Sun Ying, Liu Jiurong, Wang Shufang, Liu Zongming. 2015. Characteristics of deuterium excess parameters of geothermal water in Beijing[J]. Geology in China, (6):2029(in Chinese with English abstract).

    Google Scholar

    Liu Xun, You Guoqing. 2015. Tectonic regional subdivision of China in the light of plate theory[J].Geology in China, 42(1):1-1(in Chinese with English abstract).

    Google Scholar

    Ma Fengru, Lin Li, Wang Yingping, Cheng Wanqing, Zhao Sumin. 2006. Discussion on the sustainable exploitation and utilization of geothermal resources in Tianjin[J]. Geological Survey and Research. 29(3):222-228 (in Chinese with English abstract).

    Google Scholar

    Qiu Nansheng, Hu Shengbiao, He Lijuan. 2004. Theory and Application of Study on Geothermal Regime of Sedimentary Basin[M]. Beijing:Petroleum Industy Press, 26-29 (in Chinese).

    Google Scholar

    Sun Ying, Liu Kai, Liu Jiurong. 2015. Report of Geothermal Resources Evaluation and Regionalization in Beijing[R]. Beijing, Beijing Institute of Hydrogeology and Engineering Geology. 6(in Chinese).http://en.cags.ac.cn/AboutCAGS/Institute/HE/Major/9750.htm

    Google Scholar

    Tian Tingshan, Li Minglang, Bai Ye. 2006. Geothermal sources in China and its exploration[M]. Beijing:China Environmental Science Press. (in Chinese).

    Google Scholar

    Tian Guanghui, Lin Li, Cheng Wanqing, Zeng Meixiang, Liu Donglin, Song Meiyu, Cai Yun, Wang Ping, Zong Zenghai. 2011. The construction of dynamic monitoring network for the development and utilization of shallow geothermal energy in Tianjin[J]. Geology in China, 38(6):1660-1666. (in Chinese with English abstract).

    Google Scholar

    Wang Guiling, Zhang Wei, Liang Jiyun, Lin Wenjing, Liu Zhiming, Wang Wanli. 2017. Evaluation of geothermal resources potential in China[J]. Acta Geoscientica Sinica, 38(4):448-459. (in Chinese with English abstract).

    Google Scholar

    Wang Jiyang, Hu Shengbiao, Pang Zhonghe, He Lijuan, Zhao Ping, Zhu Chuanqing, Rao Song, Tang Xiao-yin, Kong Yanlong, Luo Lu, Li Weiwei. 2012. Estimate of geothermal resources potential for hot dry rock in the continental area of China[J]. Science and Technology Review, 2012, 30(32):25-31(in Chinese with English abstract).

    Google Scholar

    Wang liangshu, Liu Shaowen, Xiao Weiyong, Li Cheng, Li Hua, Guo Suiping, Liu Bo, Luo Yuhui, Cai Dongsheng. Distribution characteristics of terrestrial heat flow in Bohai Basin (in Chinese).

    Google Scholar

    Wang Wanli, Zhu Xi, Wang Guiling. Method of forecasting the temperature in constant temperature zone under warm temperate climates[J]. Renewable Energy Resources, 2016, 34(8):1112-1116(in Chinese with English abstract).

    Google Scholar

    Wang Weixing, Li Gongke, Li Hong, Hou Jiayu, Fang Wanling, Yang Fengtian. Hydrogeochemical characteristics and origin of the geothermal fluid in Tangquan area, Hebei Province[J]. Geology in China, 2013, 40(6):1935-1941(in Chinese with English abstract).

    Google Scholar

    Wang Xuegong, Li Yongzhuang. 2001. Characteristics and evaluation of geothermal resources in Beijing-Tianjin-Hebei Region[J]. Geothermal Energy, (6):1-7 (in Chinese).

    Google Scholar

    Wang Yang, Wang Jiyang, Deng Jinfu, Xiong Liangping. 2001. Heat flow constraint on the abundance of uranium, thorium and potassium in crust and lithosphere of the continental area of China[J]. Progress in Geophysics, 16(3):21-30 (in Chinese with English abstract).

    Google Scholar

    Wang Zhigang. 2016. Discussion on energy saving measures for atmospheric and vacuum distillation unit[J]. Green Petroleum & Petrochemicals, 1(6):1-5 (in Chinese with English abstract).

    Google Scholar

    Wang Zuwei. 2000. The Development countermeasure of Tianjin terrestrial heat resources[J]. Territory & Natural Resources Study, (3):50-51(in Chinese with English abstract).

    Google Scholar

    Wei Wanshun. 2010. Evaluation of Shallow Geothermal Energy Resources[M]. Beijing:China Earth Publishing House (in Chinese).

    Google Scholar

    Zheng Liying. 2015. The Characteristics and Evaluation of Geothermal Resources in Beijing-Tianjin-Hebei Region[D]. Beijing:China University of Geosciences (in Chinese with English abstract).https://link.springer.com/chapter/10.1007/978-3-662-46205-8_4

    Google Scholar

    Zheng Xiaoxia, Li Lingjun, Zhao Wenji, Zhao Wenhui. 2014. Spatial and temporal characteristics of atmospheric NO2 in the BeijingTianjin-Hebei Region[J]. Ecology and Environmental Sciences, (12):1938-1945 (in Chinese with English abstract).

    Google Scholar

    Zhu Rixiang, Xu Yigang, Zhu Guang, Zhang Hongfu, Xia Qunke, Zheng Tianyu. Destruction of the North China Craton. Sci China Earth Sci, 2012, doi:10.1007/s11430-012-4516-y.

    CrossRef Google Scholar

    Zhou Guofu, Gong Lili. 2014. Factor analysis of carbon footprint of Beijing Tianjin Hebei Province energy consumption and influence[J]. On Economic Problems, (8):27-31 (in Chinese with English abstract).

    Google Scholar

    Zheng Keyan, Dong Ying. 2009. Bring superiority of geothermal resources into full paly and promote the renewable energy construction in China[C]//Geothermal Symposium of West Pacific branch of 2009 International Geothermal Association(in Chinese).

    Google Scholar

    Zheng Zhizhong. 2017. Study on the characteristics of hydrothermal geothermal resources[J]. Energy & Environment, (1):54-55(in Chinese).

    Google Scholar

    Zhou Zongying, Liu Shiliang, Liu Jinxia. 2015. Study on the characteristics and development strategies of geothermal resources in China[J]. Journal of Natural Science, (7):1210-1221. (in Chinese with English abstract).

    Google Scholar

    Zhang Guobin. 2006. Geothermal resource distribution and existing problems in exploitation and utilization[J]. Coal Geology of China, (s1):25-27(in Chinese with English abstract).

    Google Scholar

    宾德智, 刘久荣, 王小玲. 2002. 北京地热资源[C]//北京地热国际研讨会论文集.

    Google Scholar

    陈墨香. 1988.华北地热[M].北京:科学出版社, 1-214.

    Google Scholar

    陈墨香, 汪集旸. 1994.中国地热资源——形成特点和潜力评估[M].北京:科学出版社, 1-39.

    Google Scholar

    崔宝乐. 2010. 京津冀经济一体化过程中霸州市温泉旅游业发展研究[C]. 同城全面对接暨京津廊经济一体化学术会议.http://cpfd.cnki.com.cn/Article/CPFDTOTAL-LFYY201008001008.htm

    Google Scholar

    方连育, 李郡, 康清普. 2015. 河北省地热资源现状调查评价与区划报告[R]. 衡水, 河北省地矿局第三水文工程地质大队, 6. 10.

    Google Scholar

    龚育龄, 王良书, 刘绍文, 叶腾飞. 2011.中国东部渤海湾盆地热结构和热演化[M].北京:中国原子能出版社, 25-42.

    Google Scholar

    胡圣标, 何丽娟, 汪集旸. 2001.中国大陆地区大地热流数据汇编(第三版)[J].地球物理学报, 44 (5):611-626.

    Google Scholar

    江玲. 2015. 京津冀地区能源消费结构与碳足迹分析[D]. 天津: 天津大学, 2015.http://d.g.wanfangdata.com.cn/Thesis_Y3174733.aspx

    Google Scholar

    李攻科, 王卫星, 李宏, 杨峰田, 王林海, 房万嶺. 2014.河北汤泉地热田地温场分布及其控制因素研究[J].中国地质, 41(6):2099-2109.

    Google Scholar

    李宁波, 杨俊伟, 于湲, 李翔, 何柏林. 2017.开放与创新结合促进京津冀地热"两能"发展[J].城市地质, 2017, 12(1):1-4.

    Google Scholar

    林黎, 高宝珠, 阮传侠. 2014. 天津市地热资源现状调查评价与区划[R], 天津, 天津地热勘查开发设计院, 10.

    Google Scholar

    林黎, 赵苏民, 王心义. 2006.天津地热水开发利用状况及保护对策研究[J].河南理工大学学报(自然科学版), 25(2):105-110.

    Google Scholar

    刘凯, 刘颖超, 孙颖, 刘久荣, 王树芳, 刘宗明. 2015.北京地区地热水氘过量参数特征分析[J].中国地质, (6):2029.

    Google Scholar

    蔺文静, 刘志明, 王婉丽, 王贵玲. 2013.中国地热资源及其潜力评估[J].中国地质, 40(1):312-320.

    Google Scholar

    刘杰, 宋美钰, 田光辉. 2012.天津地热资源开发利用现状及可持续开发利用建议[J].地质调查与研究, 2012(1):67-73.

    Google Scholar

    刘训, 游国庆. 2015.中国的板块构造区划[J].中国地质, 42(1):1-17.

    Google Scholar

    马凤如, 林黎, 王颖萍, 程万庆, 赵苏民. 2006.天津地热资源现状与可持续性开发利用问题[J].地质调查与研究, 29(3):222-228.

    Google Scholar

    邱楠生, 胡圣标, 何丽娟. 2004.沉积盆地热体制研究的理论与应用[M].北京:石油工业出版社, 2004:26-29.

    Google Scholar

    孙颖, 刘凯, 刘久荣. 2015. 北京市地热资源现状调查评价与区划报告[R]. 北京, 北京市水文工程地质大队, 6.

    Google Scholar

    田光辉, 林黎, 程万庆, 曾梅香, 刘东林, 宋美珏, 蔡芸, 王平, 宗振海. 2011.天津市浅层地热能开发利用动态监测网建设[J].中国地质, 38(6):1660-1666.

    Google Scholar

    田廷山, 李明朗, 白冶. 2006.中国地热资源及开发利用[M].北京:中国环境科学出版社.

    Google Scholar

    王贵玲, 张薇, 梁继运, 蔺文静, 刘志明, 王婉丽. 2017.中国地热资源潜力评价[J].地球学报, 38(4):448-459.

    Google Scholar

    王良书, 刘绍文, 肖卫勇, 李成, 李华, 郭随平, 刘波, 罗毓辉, 蔡东升.2002.渤海盆地大地热流分布特征[J].科学通报, 47(2):151-155.

    Google Scholar

    王婉丽, 朱喜, 王贵玲.暖温带地区恒温层温度的预测方法[J].可再生能源, 2016, 34(8):1112-1116.

    Google Scholar

    王卫星, 李攻科, 李宏, 侯佳渝, 房万嶺, 杨峰田. 2013.河北汤泉地热流体水文地球化学特征及其成因[J].中国地质, 40(6):1935-1941.

    Google Scholar

    汪集旸, 胡圣标, 庞忠和, 何丽娟, 赵平, 朱传庆, 饶松, 唐晓音, 孔彦龙, 罗璐, 李卫卫. 2012.中国大陆干热岩地热资源潜力评估[J].科技导报.

    Google Scholar

    汪洋, 汪集旸, 邓晋福, 熊亮萍. 2001.中国大陆地壳和岩石圈铀、钍、钾丰度的大地热流约束[J].地球物理学进展, 16(3):21-30.

    Google Scholar

    王志刚. 2016.地热将成为我国非化石能源增量的主力——京津冀地区地热资源潜力及开发利用设想[J].石油石化节能与减排, 1(6):1-5.

    Google Scholar

    王祖伟. 2000.天津市地热资源利用现状及发展对策[J].国土与自然资源研究, 2000(3):50-51.

    Google Scholar

    王学工, 李永壮. 2001.京津冀地区地热特征及资源评价[J].地热能, 2001(6):1-7.

    Google Scholar

    卫万顺. 2010.浅层地温能资源评价[M].北京:中国大地出版社, 2010.

    Google Scholar

    张国斌. 2006.河北省地热资源分布特征、开发利用现状、存在问题与建议[J].中国煤炭地质, 2006(s1):25-27.

    Google Scholar

    郑克棪, 董颖. 2009. 发挥地热资源优势促进中国可再生能源建设[C]//2009国际地热协会西太平洋分会地热研讨会.

    Google Scholar

    郑丽英. 2015. 京津冀地区新生代地热热储分布特征与资源评价[D]. 北京: 中国地质大学(北京).http://cdmd.cnki.com.cn/Article/CDMD-11415-1015385450.htm

    Google Scholar

    郑晓霞, 李令军, 赵文吉, 赵文慧. 2014.京津冀地区大气NO2污染特征研究[J].生态环境学报, 2014(12):1938-1945. doi: 10.3969/j.issn.1674-5906.2014.12.008

    CrossRef Google Scholar

    郑志忠. 2017.水热型地热资源特征研究[J].能源与环境, (1):54-55.

    Google Scholar

    周国富, 宫丽丽. 2014.京津冀能源消耗的碳足迹及其影响因素分析[J].经济问题, (8):27-31.

    Google Scholar

    周总瑛, 刘世良, 刘金侠. 2015.中国地热资源特点与发展对策[J].自然资源学报, (7):1210-1221. doi: 10.11849/zrzyxb.2015.07.013

    CrossRef Google Scholar

    朱日祥, 徐义刚, 朱光, 张宏福, 夏群科, 郑天愉. 2012.华北克拉通破坏[J].中国科学:地球科学, 42(8):1135-1159.

    Google Scholar

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