IIR document
Carnot comparison of multi-temperature level absorption heat cycles.
Author(s) : ABRAHAMSSON K., JERNQVIST A.
Type of article: Article, IJR article
Summary
A Carnot model operating with two heat engines and two mechanical heat pumps is defined to be the correct and logical way to describe the mechanical analogy for an absorption heat pump. General equations for the Carnot COP are exemplified and simulated for an absorption heat pump, and an entropy flow fraction diagram is introducted. The absorption heat cycles must operate under the same conditions when they are compared.
Available documents
Format PDF
Pages: 240-246
Available
Public price
20 €
Member price*
Free
* Best rate depending on membership category (see the detailed benefits of individual and corporate memberships).
Details
- Original title: Carnot comparison of multi-temperature level absorption heat cycles.
- Record ID : 1993-3596
- Languages: English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 16 - n. 4
- Publication date: 1993/07
Links
See other articles in this issue (6)
See the source
Indexing
-
Rotary absorption-recompression heat pump.
- Author(s) : RIFFAT S. B., SHANKLAND N. J., WONG C. W.
- Date : 1994
- Languages : English
- Source: Build. Serv. Eng. Res. Technol. - vol. 15 - n. 1
View record
-
Absorption heat-pump regeneration in a Rankine ...
- Author(s) : JAWAHAR N., KUMAR S.
- Date : 1994/11
- Languages : English
- Source: Heat Recov. Syst. CHP - vol. 14 - n. 6
View record
-
EXERGETIC ANALYSIS OF MULTISTAGE VAPOUR COMPRES...
- Author(s) : FORNASIERI E.
- Date : 1984
- Languages : Italian
- Source: Industria italiana del Freddo - vol. 38 - n. 4
View record
-
Finite-time exergy economic performance optimiz...
- Author(s) : ZHENG Z., CHEN L., SUN F.
- Date : 2006/12
- Languages : Chinese
- Source: Refrigeration - vol. 25 - n. 4
View record
-
An investigation of water as a refrigerant.
- Author(s) : ORSHOVEN D. van, KLEIN S. A., BECKMAN W. A.
- Date : 1993
- Languages : English
- Source: J. Energy Resour. Technol. - vol. 115 - n. 4
View record