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Heat and mass transfer studies on metal-hydrogen reactor filled with MmNi4.6Fe0.4
Authors:F. Askri  M. Ben SalahA. Jemni  S. Ben Nasrallah
Affiliation:Laboratoire d''Etudes des Systèmes Thermiques et Energétiques, Ecole Nationale d''Ingénieurs de Monastir, Avenue Ibn Eljazzar, 5019 Monastir, Tunisia
Abstract:A transient, three-dimensional computational investigation of coupled heat and mass transfer in an annular cylindrical hydrogen storage tank, equipped with fins and filled with MmNi4.6Fe0.4, is presented. The effects of different parameters such as length, thickness and thermal conductivity of fins and overall heat transfer coefficient on the hydrogen storage performance of the tank are studied. The predicted hydrogen storage capacity at different supply pressures showed good agreement with the experimental data reported in the literature. In addition, it is observed that the use of fins enhances heat transfer within the hydride bed and consequently 40% improvement of the time required for 90% storage can be achieved over the case without fins.
Keywords:MmNi4.6Fe0.4   Hydrogen storage   3D-model   Heat transfer   Fins
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