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Performance evaluation of a novel concentric metal hydride reactor assisted with phase change material
Faculty
Engineering
Year:
2023
Type of Publication:
ZU Hosted
Pages:
Authors:
Ramy Hamdy Mohamed Abdelhady
Staff Zu Site
Abstract In Staff Site
Journal:
Applied thermal engineering journal Elsevier
Volume:
Keywords :
Performance evaluation , , novel concentric metal hydride
Abstract:
Hydrogen storage is a promising technique that could handle the challenges of intermittent renewable production on the electric grid. Metal Hydride (MH) is a promising hydrogen storage technique owing to its safety, availability, and high volumetric storage density. However, MH requires an efficient heat management system. Therefore, this paper proposes a multi-layer cylindrical reactor where layers of MH and phase change material (PCM) are alternatively arranged. A numerical model is developed utilizing COMSOL Multiphysics software and is validated to predict the performance of the proposed reactor at various design parameters. As PCM thermal conductivity changes from 0.2 to 3 W/m.K, absorption time, based on 90% absorption, reduces from 3555s to 675 s (∼5.33 times reduction). Compared to a reference case, four layers system reduces absorption time by 78%. Lithium nitrate trihydrate as PCM material exhibits the best performance, allowing four layers to greatly reduce reactor volume with a slight absorption time delay.. The analysis introduces two novel parameters expressing the absorption rate per system mass and volume. From the intensive analysis, the specific capacity rate (SCR) of the proposed reactor is 1.51 gH2/min/kgsys, while the volumetric capacity rate (VCR) of the proposed reactor is 3016 gH2/min/m3sys. SCR and VCR are 3.4 and 3.12 times higher than the corresponding values in literature.
Author Related Publications
Ramy Hamdy Mohamed Abdelhady, "Performance enhancement of adsorption beds with silica-gel particles packed in aluminum foams", Elsevier, 2019
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Ramy Hamdy Mohamed Abdelhady, "Productivity Improvements of Adsorption Desalination Systems", Springer, Singapore, 2019
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Ramy Hamdy Mohamed Abdelhady, "Assessment of numerical models in the evaluation of adsorption cooling system performance", Elsevier, 2018
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Ramy Hamdy Mohamed Abdelhady, "Enhancement of a heat sink performance using a partial shield and/or a guide plate", Elsevier, 2019
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Ramy Hamdy Mohamed Abdelhady, "Experimental optimization of the cycle time and switching time of a metal organic framework adsorption desalination cycle", Elsevier, 2021
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Department Related Publications
Mohamed Lotfy Elsayed Abdelkreem, "THERMAL PERFORMANCE OF FLAT PLATE HEAT SINK WITH ATTACHED HEAT SHIELD", Zagazig University, 2012
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Mohamed Lotfy Elsayed Abdelkreem, "Effect of a Slotted Shield on Thermal and Hydraulic Performance of a Heat Sink", ASME, 2014
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Saliem Abdelaziz Saliem Anose, "Role of hybrid nanoparticles on thermal, electrical conductivity, microstructure, and hardness behavior of nanocomposite matrix", Elsevier B.V., 2021
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Saliem Abdelaziz Saliem Anose, "Numerical Investigation of Flow and Heat Transfer over a Shallow Cavity: Effect of Cavity Height Ratio", MDPI, 2021
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Saliem Abdelaziz Saliem Anose, "Thermodynamic Analysis of Partitioned Combined Cycle using Simple Gases", MDPI, 2019
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