Testing of PCM Heat Storage Modules with Solar Collectors as Heat Source

A latent heat storage based on the phase change material Sodium Acetate Trihydrate (SAT) has been tested as part of a demonstration system. The full heat storage consisted of 4 individual modules each containing about 200kg of sodium acetate trihydrate with different additives. The aim was to active...

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Published inEnergy procedia Vol. 91; pp. 138 - 144
Main Authors Englmair, Gerald, Dannemand, Mark, Johansen, Jakob B., Kong, Weiqiang, Dragsted, Janne, Furbo, Simon, Fan, Jianhua
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.01.2016
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Abstract A latent heat storage based on the phase change material Sodium Acetate Trihydrate (SAT) has been tested as part of a demonstration system. The full heat storage consisted of 4 individual modules each containing about 200kg of sodium acetate trihydrate with different additives. The aim was to actively utilize the ability of the material to supercool to obtain long storage periods. The modules were charged with solar heat supplied by 22.4 m2 evacuated tubular collectors. The investigation showed that it was possible to fully charge one module within a period of 270minutes with clear skies. In long periods with high level of irradiance several modules were charged in parallel due to the limited heat exchange capacity of the integrated heat exchanger of the modules. After the modules were heated to more than 80° C they were set to passively cool down. Modules reached 30°C in a period of parallel cool down without the sodium acetate trihydrate solidified in 3 of the 4 modules. Further tests showed that stable supercooling at ambient temperature is possible.
AbstractList A latent heat storage based on the phase change material Sodium Acetate Trihydrate (SAT) has been tested as part of a demonstration system. The full heat storage consisted of 4 individual modules each containing about 200kg of sodium acetate trihydrate with different additives. The aim was to actively utilize the ability of the material to supercool to obtain long storage periods. The modules were charged with solar heat supplied by 22.4 m2 evacuated tubular collectors. The investigation showed that it was possible to fully charge one module within a period of 270minutes with clear skies. In long periods with high level of irradiance several modules were charged in parallel due to the limited heat exchange capacity of the integrated heat exchanger of the modules. After the modules were heated to more than 80° C they were set to passively cool down. Modules reached 30°C in a period of parallel cool down without the sodium acetate trihydrate solidified in 3 of the 4 modules. Further tests showed that stable supercooling at ambient temperature is possible.
Author Furbo, Simon
Englmair, Gerald
Dragsted, Janne
Fan, Jianhua
Johansen, Jakob B.
Kong, Weiqiang
Dannemand, Mark
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Keywords Sodium acetate trihydrate
Seasonal heat storage
Stable supercooling
Phase change material
PCM
Compact thermal energy storage
Language English
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Snippet A latent heat storage based on the phase change material Sodium Acetate Trihydrate (SAT) has been tested as part of a demonstration system. The full heat...
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SubjectTerms Compact thermal energy storage
PCM
Phase change material
Seasonal heat storage
Sodium acetate trihydrate
Stable supercooling
Title Testing of PCM Heat Storage Modules with Solar Collectors as Heat Source
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