Title of article :
Three-dimensional modeling and simulation of hydrogen absorption in metal hydride hydrogen storage vessels
Author/Authors :
Nam، نويسنده , , Jinmoo and Ko، نويسنده , , Johan and Ju، نويسنده , , Hyunchul، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
12
From page :
164
To page :
175
Abstract :
In this paper, a three-dimensional hydrogen absorption model is developed to precisely study the hydrogen absorption reaction and resultant heat and mass transport phenomena in metal hydride hydrogen storage vessels. The 3D model is first experimentally validated against the temperature evolution data available in the literature. In addition to model validation, the detailed 3D simulation results show that at the initial absorption stage, the vessel temperature and H/M ratio distributions are uniform throughout the entire vessel, indicating that hydrogen absorption is very efficient early during the hydriding process; thus, the local cooling effect is not influential. On the other hand, non-uniform distributions are predicted at the subsequent absorption stage, which is mainly due to differential degrees of cooling between the vessel wall and core regions. In addition, a parametric study is carried out for various designs and hydrogen feed pressures. This numerical study provides a fundamental understanding of the detailed heat and mass transfer phenomena during the hydrogen absorption process and further indicates that efficient design of the storage vessel and cooling system is critical to achieve rapid hydrogen charging performance.
Keywords :
Three-dimensional Simulation , Hydrogen absorption , Hydrogen storage , metal hydride , Heat and mass transfer
Journal title :
Applied Energy
Serial Year :
2012
Journal title :
Applied Energy
Record number :
1605061
Link To Document :
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