Numerical study on the effect of microporous layer crack changes on water management in gas diffusion layer of proton exchange membrane fuel cell
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics
Reference38 articles.
1. Two-phase flow in porous electrodes of proton exchange membrane fuel cell;Jiao;Trans. Tianjin Univ.,2020
2. Effects of basic gas diffusion layer components on PEMFC performance with capillary pressure gradient;Sim;Int. J. Hydrogen Energy,2021
3. Lattice Boltzmann simulation of liquid water transport inside and at interface of gas diffusion and micro-porous layers of PEM fuel cells;Deng;Int. J. Heat Mass Transf.,2019
4. Pore-scale investigation of the effect of micro-porous layer on water transport in proton exchange membrane fuel cell;Hou;J. Electrochem. Soc.,2020
5. Increasing the performance of gas diffusion layer by insertion of small hydrophilic layer in proton-exchange membrane fuel cells;Shakerinejad;Int. J. Hydrogen Energy,2018
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1. Micro-CT structures facilitated lattice Boltzmann simulations on the water dynamics in PEMFCs GDL-Gas channel;International Journal of Hydrogen Energy;2024-09
2. Pore-scale modeling of gas diffusion layers: Investigation of gas-liquid two-phase transport properties;International Journal of Heat and Mass Transfer;2024-09
3. Progresses on two-phase modeling of proton exchange membrane water electrolyzer;Energy Reviews;2024-09
4. Effect of gas diffusion layer surface property on platinum nanowire array electrode performance in proton exchange membrane fuel cells;International Journal of Hydrogen Energy;2024-07
5. Effect of porous transport layer wettability on oxygen transportation in proton exchange membrane water electrolysis;Journal of Power Sources;2024-06
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