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A Lattice Boltzmann Model for Simulating Gas Flow in Kerogen Pores In this work, we present a novel lattice Boltzmann (LB) model, which can take account of the effects of surface diffusion, gas slippage, and adsorbed layer, to study shale gas flow in a kerogen pore under real gas conditions
A lattice Boltzmann model for simulating gas transport in coal . . . Based on the lattice Boltzmann method (LBM), this study constructs a LB model considering surface adsorption and diffusion effects, which involves multiple mechanisms of gas flow, including viscous flow, enhanced gas slippage (gas slippage is enhanced by surface diffusion) and surface diffusion
The shale gas flow in the complex porous media based on the lattice . . . By introducing regularization equations, correcting local Knudsen numbers, modifying boundary conditions, and combining with the generalization processing of microscale effects, this article proposes a fully coupled shale gas lattice Boltzmann model that includes all the above-mentioned factors
A Lattice Boltzmann Model for Simulating Gas Flow in Kerogen Pores In this work, we present a novel lattice Boltz-mann (LB) model, which can take account of the effects of surface diffusion, gas slippage, and adsorbed layer, to study shale gas flow in a kerogen pore under real gas conditions
Lattice Boltzmann simulation of the gas flow in complex . . . In this paper,a multi-relaxation-time lattice Boltzmann model for simulating gas flow in complex microchannels is constructed The dynamic slip boundary over a curved surface is adopted,and the micro-scale effect and the influence of the Knudsen layer are considered To describe slip velocity in the microchannel accurately,the local Knudsen number