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Titlebook: Coupled Thermo-Hydro-Mechanical-Chemical Processes in Fractured Rocks; Fundamentals, Modeli Zhihong Zhao Book 2023 The Editor(s) (if applic

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n internationally recognized method (Tsang et al. in Water Resour Res 51:6923–6972, 2015; Wang et al. in J Rock Mech Geotech Eng 10:411–435, 2018; Birkholzer et al. in Int J Rock Mech Min Sci 122: 103995, 2019). Considering the disruptive events of final repositories, leaching of radioactive nuclear
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Introduction,ck masses. Knowledge of the coupled THMC processes in fractured rock masses is essential for the reliable solutions of many rock engineering problems, especially the emerging projects like extremely deep railway and hydraulic tunnels, enhanced geothermal systems, high-level radioactive nuclear waste repositories, and CO. geological sequestrations.
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Numerical Modeling on Coupled THMC Processes in Fractured Rocksments) and GTO-CCS (geothermal technology office’s code comparison study), have been initiated and continuously operated to develop the robust and accurate numerical codes for coupled THMC processes in geological media.
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Tunnel Engineeringnstruction and maintenance can also change the distributions of in-situ stress, water pressure and temperature in the near- and far-field rock masses. Excavation damage zone (EDZ) is defined as the surrounding zone in which the original states of stress, strain, and fluid flow are altered by the excavation-induced perturbation.
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Water–Rock Interactions in Rock Fracturesn this monograph, the generic term of . is used to represent the fully coupled processes between groundwater and rocks in rock engineering, while the term has a more specific meaning within the geoscience, i.e., the dominantly chemical and thermal exchanges (reactions) between groundwater and crust rocks.
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