05075nam 22007335 450 991074115780332120230810101147.03-031-25787-110.1007/978-3-031-25787-2(MiAaPQ)EBC30684178(Au-PeEL)EBL30684178(DE-He213)978-3-031-25787-2(PPN)272270547(EXLCZ)992796291690004120230810d2023 u| 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierCoupled Thermo-Hydro-Mechanical Processes in Fractured Rock Masses[electronic resource] Discrete Element Modeling and Engineering Applications /by Fengshou Zhang, Branko Damjanac, Jason Furtney1st ed. 2023.Cham :Springer International Publishing :Imprint: Springer,2023.1 online resource (316 pages)Print version: Zhang, Fengshou Coupled Thermo-Hydro-Mechanical Processes in Fractured Rock Masses Cham : Springer International Publishing AG,c2023 9783031257865 Chapter 1: Introduction to the Discrete Element Method (DEM) and Related Fluid Mechanics Concepts -- Chapter 2: Discrete Element Modeling of Hydraulic Fracturing -- Chapter 3: DEM Coupled with Computational Fluid Dynamics (CFD) -- Chapter 4: DEM Coupled with Dynamic Fluid Mesh (DFM) -- Chapter 5: DEM Coupled with Lattice-Boltzmann Method (LBM) -- Chapter 6: Hydraulic Stimulation of Naturally Fractured Reservoirs -- Chapter 7: Models of Stimulation and Production from Enhanced Geothermal Systems -- Chapter 8: Hydraulic Fracturing Induced Fault Reactivation -- Chapter 9: 3D Lattice Modeling of Hydraulic Fracturing in Naturally Fractured Reservoirs -- Chapter 10: Heat Advection and Forced Convection in a Lattice Code -- Chapter 11: Near Wellbore HF Propagation for Different Perforation Models -- Chapter 12: Design of Extreme Limited Entry Perforation.The subject of thermo-hydro-mechanical coupled processes in fractured rock masses has close relevance to energy-related deep earth engineering activities, such as enhanced geothermal systems, geological disposal of radioactive waste, sequestration of CO2, long-term disposal of waste water and recovery of hydrocarbons from unconventional reservoirs. Despite great efforts by engineers and researchers, comprehensive understanding of the thermo-hydro-mechanical coupled processes in fractured rock mass remains a great challenge. The discrete element method (DEM), originally developed by Dr. Peter Cundall, has become widely used for the modeling of a rock mass, including its deformation, damage, fracturing and stability. DEM modeling of the coupled thermo-hydro-mechanical processes in fractured rock masses can provide some unique insights, to say the least, for better understanding of those complex issues. The authors of this book have participated in various projects involving DEM modeling of coupled thermo-hydro-mechanical processes during treatment of a rock mass by fluid injection and/or extraction and have provided consulting services to some of the largest oil-and-gas companies in the world. The breadth and depth of our engineering expertise are reflected by its successful applications in the major unconventional plays in the world, including Permian, Marcellus, Bakken, Eagle Ford, Horn River, Chicontepec, Sichuan, Ordos and many more. The unique combination of the state-of-the-art numerical modeling techniques with state-of-the-practice engineering applications makes the presented material relevant and valuable for engineering practice. We believe that it is beneficial to share the advances on this subject and promote some further development.Geotechnical engineeringWaterHydrologyCogeneration of electric power and heatFossil fuelsEarth sciencesRock mechanicsSoil mechanicsGeotechnical Engineering and Applied Earth SciencesWaterFossil FuelEarth SciencesSoil and Rock MechanicsGeotechnical engineering.Water.Hydrology.Cogeneration of electric power and heat.Fossil fuels.Earth sciences.Rock mechanics.Soil mechanics.Geotechnical Engineering and Applied Earth Sciences.Water.Fossil Fuel.Earth Sciences.Soil and Rock Mechanics.624.131Zhang Fengshou1424928Damjanac Branko1424929Furtney Jason1424930MiAaPQMiAaPQMiAaPQBOOK9910741157803321Coupled Thermo-Hydro-Mechanical Processes in Fractured Rock Masses3554568UNINA