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Titlebook: Coupled Thermo-Hydro-Mechanical Processes in Fractured Rock Masses; Discrete Element Mod Fengshou Zhang,Branko Damjanac,Jason Furtney Book

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3D Lattice Modeling of Hydraulic Fracturing in Naturally Fractured Reservoirs,ormation and fracturing of rock, and fluid flow in open hydraulic fracture and porous media flow in surrounding reservoir rock. Analytical and semi-analytical solutions can be derived for relatively simple geometries and approximations of rock material behavior (i.e., continuous, homogeneous and iso
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Heat Advection and Forced Convection in a Lattice Code,d production is discussed in this chapter. We present an effort to consider three relevant thermal mechanisms in an existing lattice code initially designed for hydraulic fracturing: (a) thermal advection in the fluid; (b) heat transfer by forced convection from the rock to the fluid; and (c) accura
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Near Wellbore HF Propagation for Different Perforation Models,ng spiral perforation, oriented perforation and Tristim perforation. For each perforation model, a total of six perforation tunnels are explicitly modeled and the representative intermediate states are chosen to analyze the results. The numerical simulation results show that the perforation tunnels
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Design of Extreme Limited Entry Perforation,ers per stage. The objective is to improve the stimulation performance by reducing the fracturing stages and creating more hydraulic fractures in terms of cost-efficiency in geological engineering. Field tests demonstrate the uneven distribution of fluid volume among clusters and only a few perforat
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M 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 in978-3-031-25789-6978-3-031-25787-2
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Coupled Thermo-Hydro-Mechanical Processes in Fractured Rock MassesDiscrete Element Mod
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Coupled Thermo-Hydro-Mechanical Processes in Fractured Rock Masses978-3-031-25787-2
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Was ist und wozu Sozioökonomie? the coupled DEM-PNM model can effectively analyze the intricate fracturing behavior associated with hydraulic fracturing in naturally fractured rock masses and dense granular media. The numerical analysis provides valuable insights into the mechanisms underlying strong hydro-mechanical coupling pro
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