LAPSE:2023.21310
Published Article
LAPSE:2023.21310
Novel Adsorption Cycle for High-Efficiency Adsorption Heat Pumps and Chillers: Modeling and Simulation Results
Valentin Schwamberger, Aditya Desai, Ferdinand P. Schmidt
March 22, 2023
A novel thermodynamic cycle for adsorption heat pumps and chillers is presented. It shows a significant improvement of the internal heat recovery between the adsorption and the desorption half cycle. A stratified thermal storage, which allows for a temperature-based extraction and insertion of storage fluid, is hydraulically coupled with a single adsorber. The benefit is an increased efficiency by reusing the released heat of adsorption for regeneration of the adsorber and by rendering possible low driving temperature differences. For investigating the second law of this cycle, a dynamic model is employed. The transient behavior of the system and the respective losses because of driving temperature differences at the heat exchangers and losses due to mixing within the storage and to the surroundings are depicted in this one-dimensional model. The model is suitable both for analyzing this advanced cycle as well as for comparisons with other cycles.
Keywords
adsorption cycle, adsorption system, heat recovery, Modelling, Simulation, stratified thermal storage, thermodynamic cycle
Suggested Citation
Schwamberger V, Desai A, Schmidt FP. Novel Adsorption Cycle for High-Efficiency Adsorption Heat Pumps and Chillers: Modeling and Simulation Results. (2023). LAPSE:2023.21310
Author Affiliations
Schwamberger V: Energy and Building Technology Group, Institute of Applied Thermofluidics, Karlsruhe Institute of Technology (KIT), Kaiserstr. 12, 76131 Karlsruhe, Germany
Desai A: Energy and Building Technology Group, Institute of Applied Thermofluidics, Karlsruhe Institute of Technology (KIT), Kaiserstr. 12, 76131 Karlsruhe, Germany [ORCID]
Schmidt FP: Energy and Building Technology Group, Institute of Applied Thermofluidics, Karlsruhe Institute of Technology (KIT), Kaiserstr. 12, 76131 Karlsruhe, Germany [ORCID]
Journal Name
Energies
Volume
13
Issue
1
Article Number
E19
Year
2019
Publication Date
2019-12-19
Published Version
ISSN
1996-1073
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PII: en13010019, Publication Type: Journal Article
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LAPSE:2023.21310
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doi:10.3390/en13010019
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Mar 22, 2023
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