Thermodynamic research on a direct contact thermal storage cycle.
[In Chinese. / En chinois.]
Author(s) : ZHANG X. L., LI R. Y., SHU P. C., et al.
Type of article: Article
Summary
A direct contact thermal storage system has advantages such as little corrosion, no scaling, higher heat transfer efficiency and small temperature difference. Thermodynamic research on a direct contact thermal storage system was carried out which concluded that the direct contact thermal storage system had a higher COP and exergy efficient than a traditional spiral tube type and its main exergy loss resulted from the compressor. Otherwise, some influences of super heating degree, super cooling degree, and adiabatic efficiency are also discussed.
Details
- Original title: [In Chinese. / En chinois.]
- Record ID : 2005-0192
- Languages: Chinese
- Source: Refrigeration - vol. 86 - n. 1
- Publication date: 2004/03
Links
See other articles in this issue (5)
See the source
Indexing
-
Themes:
Mass transfer;
Thermal energy storage - Keywords: Temperature difference; Heat transfer; Research; Energy storage; COP
-
Turbulent buoyant flows into a two-dimensional ...
- Author(s) : CAI L., STEWART W. E. Jr, SOHN C. W.
- Date : 1993/11
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 36 - n. 17
View record
-
Transient natural convection heat transfer of f...
- Author(s) : WU H. W., TSAI W. C., CHOU H. M.
- Date : 2004/04
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 47 - n. 8-9
View record
-
Cold accumulation: methods and modern technical...
- Author(s) : FILIN S. O., ZAKCHEVSKIJ B.
- Date : 2002
- Languages : Russian
- Source: Kholodilnaya Tekhnika - n. 10
View record
-
An experimental study of enhanced heat transfer...
- Author(s) : STRITIH U.
- Date : 2004/06
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 47 - n. 12-13
View record
-
Crystallization of supercooled spherical nodule...
- Author(s) : OMARI K. el, DUMAS J. P.
- Date : 2004/12
- Languages : English
- Source: International Journal of thermal Sciences - vol. 43 - n. 12
View record