Design and computational analysis of a metal hydride hydrogen storage system with hexagonal honeycomb based heat transfer enhancements-part A
Abstract
In this study, design and performance analysis is carried out for a 10 kWh metal hydride based hydrogen storage system. The system is equipped with distinctive aluminium hexagonal honeycomb based heat transfer enhancements (HTE) having higher surface area to volume ratio for effective heat transfer combined with low system weight addition. The system performance was studied under different operating conditions. The optimum absorption condition was achieved at 35 bar with water at room temperature as heat transfer fluid where up to 90% absorption was completed in 7200 s. The performance of the reactor was observed to significantly improve upon the addition of the HTE network at a minimal system weight penalty.
- Publication:
-
International Journal of Hydrogen Energy
- Pub Date:
- April 2021
- DOI:
- 10.1016/j.ijhydene.2021.01.135
- Bibcode:
- 2021IJHE...4613116A
- Keywords:
-
- Hydrogen storage;
- Metal hydride;
- Reactor design;
- MH;
- Metal hydride;
- ENG;
- Expanded natural graphite;
- HTF;
- Heat transfer fluid;
- PCM;
- Phase changing materials;
- HPMH;
- High pressure metal hydride;
- HTE;
- Heat Transfer Enhancement