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Sorption compressor efficiencies of different designs
A. Davidesko,
N. Tzabar
Department of Mechanical Engineering and Mechatronics
Research output
:
Contribution to journal
›
Conference article
›
peer-review
1
Scopus citations
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Keyphrases
Sorption Compressor
100%
Compressor Efficiency
100%
Sorption
80%
Adsorbent
40%
Moving Parts
40%
Numerical Model
20%
Heater
20%
Cell Configuration
20%
Joule-Thomson Cryocooler
20%
Space Application
20%
Heat Mass Transfer
20%
Thermally Driven
20%
Mechanical Compressor
20%
Low Efficiency
20%
Cell Design
20%
Cooling Cycle
20%
Carnot Efficiency
20%
PV Power
20%
Cryogenic Cooling System
20%
Heating Cycle
20%
Thermal Efficiency
20%
Total Temperature
20%
Geometric Dimension
20%
Engineering
Compressor Efficiency
100%
Moving Part
66%
Numerical Model
33%
Cooling System
33%
Cell Design
33%
Space Application
33%
Cooling Cycle
33%
Carnot Efficiency
33%
Cryogenic Cooling
33%
Heating Cycle
33%
Thermodynamic Efficiency
33%