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Mukul. M. Sharma

Publications and source records attributed to Mukul. M. Sharma.

2 recordsLinked to original sources

A computationally efficient approach to modeling contact problems and fracture closure using superposition method

Characterizing fracture closure behavior, surface roughness and fracture compliance is crucial in many earth sciences, such as fault zone studies, underground CO2 sequestration, nuclear waste repositories and geothermal energy exploitation. In this study, we present a computationally efficient method to model fracture closure on surface asperities, which can be can be used to quantify and simulate mechanical, hydraulic, and transport properties of subsurface fractures

physics.geo-ph

A Non-Local Model for Fracture Closure on Rough Fracture Faces and Asperities

Fractures are ubiquitous in the subsurface. The flow and mechanical properties of these fractures are controlled by its compliance or stiffness. Characterizing fracture compliance is crucial in applications such as fault zone studies, underground CO2 sequestration, nuclear waste repositories and geothermal energy exploitation. In this study, we present a method to determine fracture compliance by modeling fracture closure on asperities using integral transform.

physics.geo-ph