A baked anode is a complex material, that results from the mixing and baking of different petrol coke grains, with different size distributions, with a pitch. A preliminary study (ICSAS16-CST-MFG-35143-01) developed a PFC2D model accounting for the microstructure of a baked anode, using the Bonded Particle Model (BPM).
Dr. Fu’s experience centers on computational, analytical, and experimental geomechanics in subsurface resource development (petroleum, geothermal energy, and mining) and underground excavation. He is experienced in the computational modeling of coupled geomechanics and fluid flow. He has experience in developing analytical models using fracture mechanics, designing and performing laboratory hydraulic fracturing and rock mechanics experiments, characterizing subsurface features, and integrating large field datasets with numerical simulations.
Dr. Fu has worked on a variety of geomechanics projects, such as numerical modeling and analytical upscaling of hydraulic fracture swarms, experimental study of time-dependent fracture initiation, impact of natural fracture heterogeneities on hydraulic fracture propagation integrating discrete element modeling, laboratory experimentation, fracture mechanics modeling, and numerical analyses of dynamic tunneling processes and tunnel durability.
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