Data di Pubblicazione:
2009
Abstract:
In this paper, a novel 3D flexible tool for simulation of metal hydrides-based (LaNi5)
hydrogen storage tanks is presented. The model is Finite Element-Based and considers
coupled heat and mass transfer resistance through a non-uniform pressure and temperature
metal hydride reactor. The governing equations were implemented and solved using
the COMSOL Multiphysics simulation environment. A cylindrical reactor with different
cooling system designs was simulated. The shortest reactor fill time (15 min) was obtained
for a cooling design configuration consisting of twelve inner cooling tubes and an external
cooling jacket. Additional simulations demonstrated that an increase of the hydride
thermal conductivity can further improve the reactor dynamic performance, provided that
the absorbent bed is sufficiently permeable to hydrogen.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Hydrogen storage; Finite difference analysis; Metal hydride
Elenco autori:
Cacciola, Gaetano; Freni, Angelo; Cipiti', Francesco
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