Lattice Boltzmann Method
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About this book
- Impact of confinement on the physics of fluids and simulation of transport, flow and adsorption of gases in confined and complex environments using the Lattice Boltzmann method.
- High-performance computing and multiblock methods.
Author / Editor information
Lingfu Liu is a Ph.D. candidate in Chemical Engineering and works with Dr. Saman Aryana at the University of Wyoming, US. He received his bachelor’s degree in Petroleum Engineering and master’s degree in Oil and Gas Field Development both at the Southwest Petroleum University, China. His main research focus on fundamental understanding of fluid physics, including transport, adsorption, and phase behavior of hydrocarbons and their mixtures using multi-scale simulation methods.
Nijat Rustamov is a Ph.D. student at the University of Wyoming department of Chemical and Biomedical Engineering under the supervision of Dr Saman A. Aryana. Nijat received his master's degree in chemical engineering from the University of Wyoming and bachelor's in petroleum engineering from Baku Higher Oil School, Azerbaijan. His research is
focused on numerical modeling of transport and adsorption in confined porous media.
Saman A. Aryana: Dr. Aryana is a Professor and the Occidental Chair in Energy and Envir onmental Technologies, as well as the Head of the Department of Chemical and Biomedical Engineering at the University of Wyoming. His research lab focuses on the theoretical and computational study of flow, transport, and phase behavior in complex subsurface systems. Utilizing scalable mesoscopic models that integrate atomistic physics, his team aims to understand system-level behavior arising from complexity. Dr. Aryana's research primarily intersects with energy, water, and environmental concerns and specializes in multiscale, multiphysics systems. He also directs a microfluidic lab where researchers create surrogate porous media to study flow dynamics in complex and disordered porous media.
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