US2006225440A1PendingUtilityA1

Refrigeration system and refrigeration method thereof

Assignee: LIN YUN CHOUPriority: Apr 8, 2005Filed: Apr 8, 2005Published: Oct 12, 2006
Est. expiryApr 8, 2025(expired)· nominal 20-yr term from priority
Inventors:Shyy-Woei Chang
F25B 9/004F25B 2400/14
46
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Claims

Abstract

A refrigeration system and refrigeration method thereof utilizing the principle of thermodynamics comprises a compressor, an air cooler connected to the compressor, an expander having a first end connected to the air cooler, a second end connected to the compressor, and a third end as an outlet wherein air pressure and air temperature are increased by the compressor, the pressurized high temperature air is fed to the air cooler, the pressurized low temperature air is fed to the expander for converting enthalpy of air into work to activate the compressor, energy contained in the air at the outlet of the expander is decreased, and temperature at the outlet of the expander is decreased. According to the present invention power is recycled in the process of conversion.

Claims

exact text as granted — not AI-modified
1 . A refrigeration method comprising the steps of employing a reversed Brayton cycle, making air being drawn into a compressor for compression by atmospheric pressure and constant-pressure cooling, and feeding the air from the compressor to an expander for isothermal expansion so as to decrease enthalpy of a body to a predetermined temperature.  
   
   
       2 . A refrigeration system comprising a compressor, an air cooler connected to the compressor, an expander having a first end connected to the air cooler, a second end connected to the compressor, and a third end as an outlet; 
 wherein air pressure and air temperature are increased by the compressor, the pressurized high temperature air is fed to the air cooler for cooling, the pressurized low temperature air is fed to the expander for converting enthalpy of air into work to activate the compressor, energy contained in the air at the outlet of the expander is decreased, and temperature at the outlet of the expander is thereby decreased.

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