On the development of rating correlations for R134a flowing through adiabatic capillary tubes.
Author(s) : CHEN S. L., LIU C. H., JWO C. S.
Summary
The proposed correlations can be used to calculate the mass flux and pressure drop directly from a given capillary tube selection. The optimum capillary size corresponding to any given set of system operating conditions can also be calculated. To determine the validation of present R134a rating correlations, the authors compare them with two sets of experimental data.
Details
- Original title: On the development of rating correlations for R134a flowing through adiabatic capillary tubes.
- Record ID : 2001-1716
- Languages: English
- Source: ASHRAE Transactions. 1999 Annual Meeting, Seattle, Washington + CD-ROM.
- Publication date: 1999
- Document available for consultation in the library of the IIR headquarters only.
Links
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Indexing
- Themes: HFCs
- Keywords: R134a; Correlation; Capillary; Flow; Development; Refrigerant
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An experimental study of the flow of R-134a ins...
- Author(s) : KHAN M. K., KUMAR R., SAHOO P. K.
- Date : 2008/09
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 31 - n. 6
- Formats : PDF
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Empirical correlations for the modelling of R13...
- Author(s) : MELO C., NETO C. B., SILVA FERREIRA R. T. da
- Date : 1999
- Languages : English
- Source: ASHRAE Transactions. 1999 Annual Meeting, Seattle, Washington + CD-ROM.
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Experimental and numerical investigation of R13...
- Author(s) : KHAN M. K., KUMAR R., SAHOO P. K.
- Date : 2008/11
- Languages : English
- Source: HVAC&R Research - vol. 14 - n. 6
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Extended insight into the metastable liquid reg...
- Author(s) : BITTLE R. R., CARTER J. A., OLIVER J. V.
- Date : 2001/04
- Languages : English
- Source: HVAC&R Research - vol. 7 - n. 2
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Dynamic simulation of HFC-134a flow through adi...
- Author(s) : HERMES C. J. L., MELO C., NEGRÃO C. O. R., et al.
- Date : 2000/07/25
- Languages : English
- Source: Proceedings of the 2000 International Refrigeration Conference at Purdue.
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