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Experimental Investigation of a Three-Bed Adsorption Refrigeration Chiller Employing an Advanced Mass Recovery Cycle
by
Aep Saepul Uyun
, Atsushi Akisawa
, Yuki Ueda
, Takahiko Miyazaki
in
Adsorbents
/ Adsorption
/ adsorption chiller
/ adsorption chiller; performance; mass recovery; low temperature heat source
/ Alternative energy sources
/ Cooling
/ Heat
/ low temperature heat source
/ mass recovery
/ Porous materials
/ T
/ Technology
2009
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Experimental Investigation of a Three-Bed Adsorption Refrigeration Chiller Employing an Advanced Mass Recovery Cycle
by
Aep Saepul Uyun
, Atsushi Akisawa
, Yuki Ueda
, Takahiko Miyazaki
in
Adsorbents
/ Adsorption
/ adsorption chiller
/ adsorption chiller; performance; mass recovery; low temperature heat source
/ Alternative energy sources
/ Cooling
/ Heat
/ low temperature heat source
/ mass recovery
/ Porous materials
/ T
/ Technology
2009
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Experimental Investigation of a Three-Bed Adsorption Refrigeration Chiller Employing an Advanced Mass Recovery Cycle
by
Aep Saepul Uyun
, Atsushi Akisawa
, Yuki Ueda
, Takahiko Miyazaki
in
Adsorbents
/ Adsorption
/ adsorption chiller
/ adsorption chiller; performance; mass recovery; low temperature heat source
/ Alternative energy sources
/ Cooling
/ Heat
/ low temperature heat source
/ mass recovery
/ Porous materials
/ T
/ Technology
2009
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Experimental Investigation of a Three-Bed Adsorption Refrigeration Chiller Employing an Advanced Mass Recovery Cycle
Journal Article
Experimental Investigation of a Three-Bed Adsorption Refrigeration Chiller Employing an Advanced Mass Recovery Cycle
2009
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Overview
The performance of an advanced three-bed adsorption chiller with a mass recovery cycle has been experimentally investigated in the present study. The temperature and pressure of various components of the chiller were monitored to observe the dynamic behaviour of the chiller. The performances in terms of the coefficient of performance (COP) and specific cooling power (SCP) were compared with a conventional single stage. The results show that the proposed cycle produces COP and SCP values superior to those of the conventional single stage cycle for heat source temperature below 75 °C.
Publisher
MDPI AG
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