Publication | Open Access
Numerical modeling of heat transfer during hydrogen absorption in thin double-layered annular ZrCo beds
25
Citations
27
References
2018
Year
Materials ScienceLayer ThicknessChemical EngineeringConversion Layer ThicknessEngineeringHeat Transfer ProcessHeat ExchangerHeat Transfer EnhancementConvective Heat TransferHydrogen AbsorptionThermodynamicsHydrogenHeat TransferThermal ModelingThermal EngineeringNumerical ModelingRefrigeration
In this work a three-dimensional (3D) hydrogen absorption model was proposed to study the heat transfer behavior in thin double-layered annular ZrCo beds. Numerical simulations were performed to investigate the effects of conversion layer thickness, thermal conductivity, cooling medium and its flow velocity on the efficiency of heat transfer. Results reveal that decreasing the layer thickness and improving the thermal conductivity enhance the ability of heat transfer. Compared with nitrogen and helium, water appears to be a better medium for cooling. In order to achieve the best efficiency of heat transfer, the flow velocity needs to be maximized.
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