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   lattice boltzmann modeling of two component gas diffusion in solid oxide fuel cell  
   
نویسنده shahnazari mohammad reza ,fazeli khavar
منبع hydrogen, fuel cell and energy storage - 2015 - دوره : 2 - شماره : 4 - صفحه:263 -270
چکیده    In recent years, the need for high efficiency, low emission power generation systems has focused much attention on the use of fuel cell technology. solid oxide fuel cells are suitable for power generation systems due to their high operating temperature (800 °c -1000 °c).two-component gas flow (h2 and h2o) in the porous media of solid oxide fuel cell’s anode have been modeled via the lattice boltzmann method; molecular distributions of the components are evaluated and the concentration voltage drop is investigated.the results of the voltage drop in different current densities are validated withprevious studies. then the effects of various parameters, such as porosity andnon-dimensional current density, on gas diffusion of h2 and h2o and also theconcentration voltage drop in the porous anode are evaluated. it was revealed that at a specific non-dimensional current density, reducing porosity causes increasing h2 concentration in the anode and concentration voltage loss. a computer program in matlab has been used to apply the cfd model.
کلیدواژه gas flow ,porous media ,lattice boltzmann method ,gas diffusion ,solid oxide fuel cell
آدرس k.n.toosi university of technology, faculty of mechanical engineering, ایران, university of california, department of mechanical engineering, usa
پست الکترونیکی snzfazeli@gmail.com
 
     
   
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