水力压裂
开裂
石油工程
超临界流体
断裂(地质)
地温梯度
热的
热工水力学
粘度
压力(语言学)
材料科学
复合材料
传热
岩土工程
地质学
机械
地球物理学
物理
哲学
气象学
有机化学
化学
语言学
作者
Wei Zhang,Chunguang Wang,Tiankui Guo,Jiayuan He,Le Zhang,Shaojie Chen,Zhanqing Qu
出处
期刊:Energy
[Elsevier BV]
日期:2021-01-19
卷期号:221: 119886-119886
被引量:128
标识
DOI:10.1016/j.energy.2021.119886
摘要
To realize the effective extraction of high-temperature thermal energy in enhanced geothermal system (EGS), it is necessary to explore how to efficiently construct fracture network in hot dry rock (HDR). Considering the cryogenic induced thermal stress, we investigate the cracking mechanism when using supercritical CO2 (SCCO2) and hydraulic fracturing to stimulate HDR. Firstly, the established three-dimensional THMD coupling model is verified by conducting high temperature granite fracturing experiments. Then, characteristics of the heat and mass transfer and fracture propagation when using SCCO2 and H2O in HDR fracturing are explored. Finally, the cracking mechanism of hydraulic and SCCO2 fracturing in HDR under thermal stress is revealed. The results indicate that the cryogenic induced thermal stress can reduce the cracking pressure and tend to form branch fractures under the cooperation of injection pressure. Adopting SCCO2 in HDR fracturing more micro fractures can be generated in near-well zone. Hydraulic fracturing has better cooling efficiency and preferably capability of extending fractures. For HDR fracturing, the scope of fracture network tends to increase first and then decrease with the raise of injection mass flux. The lower viscosity and higher specific heat capacity of fracturing fluid can promote the formation of fracture network.
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