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Numerical Simulation Study of Heat Transfer Fluid Boiling Effects on Phase Change Material in Latent Heat Thermal Energy Storage Units
by
Liu, Huaqiang
, Liu, Jing
, Niu, Dong
, Yu, Minghao
, Zheng, Xun
, Gao, Hongtao
in
Alternative energy sources
/ discharging performance
/ Efficiency
/ Energy consumption
/ Energy storage
/ flow boiling
/ Heat conductivity
/ Heat exchangers
/ Heat storage
/ Heat transfer
/ Investigations
/ Methods
/ numerical simulation
/ phase change material
/ Phase change materials
/ Porosity
/ Renewable resources
/ Solidification
/ Temperature
/ Thermal energy
/ thermal energy storage
2025
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Numerical Simulation Study of Heat Transfer Fluid Boiling Effects on Phase Change Material in Latent Heat Thermal Energy Storage Units
by
Liu, Huaqiang
, Liu, Jing
, Niu, Dong
, Yu, Minghao
, Zheng, Xun
, Gao, Hongtao
in
Alternative energy sources
/ discharging performance
/ Efficiency
/ Energy consumption
/ Energy storage
/ flow boiling
/ Heat conductivity
/ Heat exchangers
/ Heat storage
/ Heat transfer
/ Investigations
/ Methods
/ numerical simulation
/ phase change material
/ Phase change materials
/ Porosity
/ Renewable resources
/ Solidification
/ Temperature
/ Thermal energy
/ thermal energy storage
2025
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Do you wish to request the book?
Numerical Simulation Study of Heat Transfer Fluid Boiling Effects on Phase Change Material in Latent Heat Thermal Energy Storage Units
by
Liu, Huaqiang
, Liu, Jing
, Niu, Dong
, Yu, Minghao
, Zheng, Xun
, Gao, Hongtao
in
Alternative energy sources
/ discharging performance
/ Efficiency
/ Energy consumption
/ Energy storage
/ flow boiling
/ Heat conductivity
/ Heat exchangers
/ Heat storage
/ Heat transfer
/ Investigations
/ Methods
/ numerical simulation
/ phase change material
/ Phase change materials
/ Porosity
/ Renewable resources
/ Solidification
/ Temperature
/ Thermal energy
/ thermal energy storage
2025
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Numerical Simulation Study of Heat Transfer Fluid Boiling Effects on Phase Change Material in Latent Heat Thermal Energy Storage Units
Journal Article
Numerical Simulation Study of Heat Transfer Fluid Boiling Effects on Phase Change Material in Latent Heat Thermal Energy Storage Units
2025
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Overview
The innovation in thermal storage systems for solar thermal power generation is crucial for achieving efficient utilization of new energy sources. Molten salt has been extensively studied as a phase change material (PCM) for latent heat thermal energy storage systems. In this study, a two-dimensional model of a vertical shell-and-tube heat exchanger is developed, utilizing water-steam as the heat transfer fluid (HTF) and phase change material for heat transfer analysis. Through numerical simulations, we explore the interplay between PCM solidification and HTF boiling. The transient results show that tube length affects water boiling duration and PCM solidification thickness. Higher heat transfer fluid flow rates lower solidified PCM temperatures, while lower heat transfer fluid inlet temperatures delay boiling and shorten durations, forming thicker PCM solidification layers. Adding fins to the tube wall boosts heat transfer efficiency by increasing contact area with the phase change material. This extension of boiling time facilitates greater PCM solidification, although it may not always optimize the alignment of bundles within the thermal energy storage system.
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