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Comparing through-plane diffusibility correlations in PEFC gas diffusion layers using the lattice Boltzmann method
ArticleAbstract: One of the key elements in a polymer electrolyte fuel cell (PEFC) is the gas diffusion layer (GDL).Palabras claves:Diffusibility, Gas diffusion layer, lattice Boltzmann method, Polymer electrolyte fuel cell, Transport parametersAutores:Andersson M., Mayken Espinoza-Andaluz, Sunden B.Fuentes:googlescopusCompress effects on porosity, gas-phase tortuosity, and gas permeability in a simulated PEM gas diffusion layer
ArticleAbstract: Among the parameters to take into account in the design of a proton exchange membrane fuel cell (PEMPalabras claves:Gas diffusion layer, Gas-phase tortuosity, lattice Boltzmann method, Porosity, Proton exchange membrane fuel cell, Through-plane permeabilityAutores:Andersson M., Mayken Espinoza-Andaluz, Sunden B., Yuan J.Fuentes:googlescopusComputational time and domain size analysis of porous media flows using the lattice Boltzmann method
ArticleAbstract: The purpose of this study is to investigate the computational time required to describe the fluid flPalabras claves:Computational time, Domain size, Hydraulic tortuosity, lattice Boltzmann method, Porosity, Porous mediaAutores:Andersson M., Mayken Espinoza-Andaluz, Sunden B.Fuentes:googlescopusA comparative study between D2Q9 and D2Q5 lattice Boltzmann scheme for mass transport phenomena in porous media
ArticleAbstract: Characterization of different transport phenomena through porous media represents a key factor to imPalabras claves:D2Q5, D2Q9, lattice Boltzmann method, Mass transport phenomena, Porous mediaAutores:Andersson M., Ayrton Moyón, Mayken Espinoza-AndaluzFuentes:googlescopusNumerical study on permeability of gas diffusion layer with porosity gradient using lattice Boltzmann method
ArticleAbstract: In this paper, the lattice Boltzmann method (LBM) has been employed to explore the permeability andPalabras claves:Gas diffusion layer, lattice Boltzmann method, permeability, Porosity gradient, TortuosityAutores:Jiang Z., Li S., Liao J., Mayken Espinoza-Andaluz, Pan X., Shen Q., Su F., Wang H., Yang G.Fuentes:googlescopusOn hydraulic tortuosity variations due to morphological considerations in 2D porous media by using the Lattice Boltzmann method
ArticleAbstract: Hydraulic tortuosity has shown a direct dependence on porosity. Determining the hydraulic tortuosityPalabras claves:Hydraulic tortuosity, lattice Boltzmann method, Porosity, Porous mediaAutores:Alex Romero-Vera, Mayken Espinoza-Andaluz, Víctor Velasco-GalarzaFuentes:googlescopusModeling of a Gradient Porosity SOFC Anode using the Lattice Boltzmann Method
Conference ObjectAbstract: The solid oxide fuel cell (SOFC) is an electrochemical device that converts the chemical energy presPalabras claves:lattice Boltzmann method, Porosity, solid oxide fuel cell, three-phase boundaryAutores:Andersson M., Mayken Espinoza-Andaluz, Sunden B.Fuentes:googlescopusPbkp_redicting transport parameters in PEFC gas diffusion layers considering micro-architectural variations using the Lattice Boltzmann method
ArticleAbstract: A deep understanding of the behavior of microstructural parameters in proton exchange fuel cells (PEPalabras claves:Gas diffusion layer, lattice Boltzmann method, micro-architecture, proton exchange fuel cell, Transport parametersAutores:Andersson M., Mayken Espinoza-Andaluz, Sunden B.Fuentes:googlescopusStudy of the anisotropic permeability of proton exchange membrane fuel cell gas diffusion layer by lattice Boltzmann method
ArticleAbstract: In proton exchange membrane fuel cells (PEMFCs), the gas diffusion layers (GDLs) are located betweenPalabras claves:Gas diffusion layer, lattice Boltzmann method, permeability, Proton exchange membrane fuel cellAutores:Jiang Z., Li S., Liao J., Mayken Espinoza-Andaluz, Pan X., Shen Q., Wang H., Yang G., Ying R.Fuentes:googlescopus