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Impact of fins and cooling fluid on the hydrogenation process in a LaNi 5-Based metal hydride reactor for hydrogen storage
被引:12
作者:
Chibani, Atef
[1
]
Boucetta, Chahrazed
[2
]
Merouani, Slimane
[3
]
Tounsi, Assia
[1
]
Adjel, Samir
[1
]
Lamiri, Leila
[1
]
Bouchoul, Boussaha
[1
]
Merabti, Halim
[1
]
机构:
[1] Res Ctr Ind Technol CRTI, POB 64, Cheraga 16014, Algeria
[2] Larbi Ben Mhidi Univ, Fac SE, SNV, Oum El Bouaghi 04000, Algeria
[3] Univ Salah Boubnider Constantine 3, Fac Proc Engn, Dept Chem Engn, Lab Environm Proc Engn, POB 72, Constantine 25000, Algeria
关键词:
Hydrogen storage;
Absorption;
Metal hydrideLaNi5;
Heat and mass transfer;
Fins;
Cooling fluid;
PHASE-CHANGE MATERIAL;
NUMERICAL-SIMULATION;
MASS-TRANSFER;
PERFORMANCE;
ABSORPTION;
PCM;
SOLIDIFICATION;
OPTIMIZATION;
ENHANCEMENT;
TUBES;
D O I:
10.1016/j.ijhydene.2024.04.314
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
This study investigates the influence of different reactors incorporating copper circular fins within the hydride, along with variations in the reactor coolant - specifically water, oil, and nitrogen. Employing user -defined functions in the commercial software Ansys Fluent 15, a 2D numerical model was developed to assess thermal characteristics (temperature, heat flux, etc.) and kinetics of MH-hydrogenation, with a focus on the cooling fluid type. The reactor experiences diverse pressures (5 - 15 bar), an initial temperature of 298 K, and a coolant speed of 1 m/s. Validation of numerical results was performed against experimental data. The study delves into absorption properties of the storage reactor, examining crucial parameters such as hydrogen concentration, heat transfer coefficient of forced convection, and average temperature within the reactor. The findings reveal that coupling internal fins with water or oil as a coolant yields optimal performance, especially on an industrial scale. Nitrogen, on the other hand, exhibited the least favorable thermal performance, while the addition of fins significantly improved the cooling performance of the storage unit. Results were quantitatively analyzed across various scenarios to enhance understanding of the synergistic role of fins and cooling fluids in the storage performance of H 2 within LaNi 5 alloy.
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页码:134 / 146
页数:13
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