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Li Chen

Researcher at Xi'an Jiaotong University

Publications -  136
Citations -  4929

Li Chen is an academic researcher from Xi'an Jiaotong University. The author has contributed to research in topics: Lattice Boltzmann methods & Proton exchange membrane fuel cell. The author has an hindex of 34, co-authored 100 publications receiving 3527 citations. Previous affiliations of Li Chen include Chinese Ministry of Education & ETH Zurich.

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A critical review of the pseudopotential multiphase lattice Boltzmann model: Methods and applications

TL;DR: In this paper, a critical review of the theory and applications of a multiphase model in the community of the lattice Boltzmann method (LBM), the pseudopotential model proposed by Shan and Chen (1993), is presented.
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Nanoscale simulation of shale transport properties using the lattice Boltzmann method: permeability and diffusivity

TL;DR: It is found that most of the values of correction factor fall in the slip and transition regime, with no Darcy flow regime observed, indicating Knudsen diffusion always plays a role on shale gas transport mechanisms in the reconstructed shales.
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Pore-scale flow and mass transport in gas diffusion layer of proton exchange membrane fuel cell with interdigitated flow fields

TL;DR: In this article, a carbon paper gas diffusion layer (GDL) of interdigitated PEMFC is reconstructed using the stochastic method, and its macroscopic transport properties are numerically predicted.
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Numerical investigation of the coupled water and thermal management in pem fuel cell

TL;DR: In this paper, a three-dimensional, two-phase, non-isothermal model of PEMFC is presented to investigate the interaction between water and thermal transport processes, the effects of anisotropic characters of gas diffusion layer, different boundary temperature of flow plate and the effect of gas inlet humidity.
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Modeling of multi-scale transport phenomena in shale gas production — A critical review

TL;DR: In this paper, a review of the shale gas transport process during shale gas production is presented, and the corresponding multi-scale simulation models that describe the gas multiscale transport mechanisms and accurately predict the amount of shale production are explained.