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The first power generation test of hot dry rock resources exploration and production demonstration project in the Gonghe Basin, Qinghai Province, China

作者:Eryong Zhang, Dong-guang Wen, Guiling Wang, Wei-de Yan, Wenshi Wang, Chengming Ye, Xufeng Li, Huang Wang, Xianchun Tang, W. Weng, Kuan Li, Chong-yuan Zhang, Ming‐Xing Liang, Hong-bao Luo, H.F. Hu, Wei Zhang, Sen-qi Zhang, Xian-peng Jin, Haidong Wu, Lin-you Zhang, Qingda Feng, Jing-yu Xie, Dan Wang, Yun-chao He, Yuewei Wang, Zu-bin Chen, Zheng-pu Cheng, Weifeng Luo, Yi Yang, Hao Zhang, En-lai Zha, Yulie Gong, Yu Zheng, Changsheng Jiang, Shengsheng Zhang, Xue Niu, Hui Zhang, Lisha Hu, Guilin Zhu, Wenhao Xu, Zhaoxuan Niu, Li Yang, Oil and Gas Survey, China Geology Survey, Ministry of Natural Resources, Beijing 100083, China · 发表于:China Geology · 年份:2022 · DOI:10.31035/cg2022038 · 被引用次数:43 · 研究领域:Geothermal Energy Systems and Applications、CO2 Sequestration and Geologic Interactions、Hydrocarbon exploration and reservoir analysis

Hot dry rock (HDR) is a kind of clean energy with significant potential. Since the 1970s, the United States, Japan, France, Australia, and other countries have attempted to conduct several EGS (Enhanced Geothermal System) projects to extract thermal energy by breaking through key technologies. However, up to now, the development of HDR is still in the research, development, and demonstration stage. An HDR exploration borehole (with 236°C at a depth of 3705 m) was drilled into Triassic granite in the Gonghe Basin in northwest China in 2017. Subsequently, China Geological Survey (CGS) launched the HDR resources exploration and production demonstration project in 2019. After three years of efforts, a sequence of significant technological breakthroughs have been made, including the genetic model of deep heat sources, directional drilling and well completion in high-temperature hard rocks, large-scale reservoir stimulation, reservoir characterization, and productivity evaluation, reservoir connectivity and flow circulation, efficient thermoelectric conversion, monitoring, and geological risk assessment, etc. Then the whole-process technological system for HDR exploration and production has been preliminarily established accordingly. The first power generation test was completed in November 2021. The results of this project will provide scientific support for HDR development and utilization in the future.