Summary
Since the working pressure of a CO2 transcritical refrigeration system is 6-8 times that of traditional CFC or HCFC systems, circuit components must be redesigned. A finite-element method and experimental equations were introduced in the paper to analyse the structure and stress of each component. A design concept is proposed: it combines the material, the manufacture process and experimental results.
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Pages: 2002-5
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Details
- Original title: Structure and stress analysis of a CO2 transcritical refrigeration system.
- Record ID : 2003-2153
- Languages: English
- Publication date: 2002/09/17
- Source: Source: Proc. 5th IIR-Gustav Lorentzen Conf. nat. Working Fluids, Guangzhou/ C. R. Conf. Guangzhou, IIF
2002-5; sess. 2; pap. 37; 304-309; fig.; tabl.; 5 ref.
Indexing
- Themes: CO2
- Keywords: Design; Pressure; Transcritical cycle; Thermodynamic cycle; Component; CO2
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Komponenten für transkritische CO2-Anlagen klei...
- Author(s) : SÜSS J., RASMUSSEN B. D.
- Date : 2004/06
- Languages : German
- Source: KI Luft Kältetech. - vol. 40 - n. 6
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CO2 refrigeration: a revolution in the making? ...
- Author(s) : ALDER G.
- Date : 2004/09
- Languages : English
- Source: Afr. Heat. Cool. - vol. 5 - n. 3
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Optimum thermodynamic conditions for upper pres...
- Author(s) : SRINIVASAN K., SHEAHEN P., SARATHY C. S. P.
- Date : 2010/11
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 33 - n. 7
- Formats : PDF
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Research status of R744 heat pump systems.
- Author(s) : FAN X., FU G.
- Date : 2002/01
- Languages : Chinese
- Source: HV & AC - vol. 32 - n. 144
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Thermodynamic aspects of increasing use of carb...
- Author(s) : CHLYÂHOVETSKIJ D. V., CHLYÂHOVETSKIJ V. M.
- Date : 2002
- Languages : Russian
- Source: Vestnik Mezdunarodarnoj Akademii Holoda - n. 4
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