Improved flow pattern map for accurate prediction of the heat transfer coefficients during condensation of R-134a in smooth horizontal tubes and within the low-mass flux range

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dc.contributor.author Suliman, Ridhwaan
dc.contributor.author Liebenberg, L.
dc.contributor.author Meyer, Josua P.
dc.date.accessioned 2009-11-12T06:25:23Z
dc.date.available 2009-11-12T06:25:23Z
dc.date.issued 2009
dc.description.abstract This paper presents an improved flow pattern map for predicting the heat transfer coefficients during condensation of R-134a inside a smooth horizontal tube. Experimental tests were conducted over the low-mass flux range of 75–300 kg/m2 s, at a nominal saturation temperature of 40°C, and with the test section vapour qualities ranging from 0.76 down to 0.03. This represents points within the annular, intermittent and stratified flow regimes. The results were used to modify the Thome–El Hajal flow pattern map to include a transition region between the stratified-wavy and annular or intermittent flow regimes. The revised flow pattern-based heat transfer correlation predicted the experimental data to a mean deviation of less than 6%. en_US
dc.identifier.citation R. Suliman et al., Improved flow pattern map for accurate prediction of the heat transfer coefficients during condensation of R-134a in smooth horizontal tubes and within the low-mass flux range, Int. J. Heat Mass Transfer (2009), doi:10.1016/j.ijheatmasstransfer.2009.08.017 en_US
dc.identifier.issn 0017-9310
dc.identifier.other 10.1016/j.ijheatmasstransfer.2009.08.017
dc.identifier.uri http://hdl.handle.net/2263/11821
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.rights Elsevier en_US
dc.subject Smooth tube en
dc.subject Flow pattern en
dc.subject.lcsh Condensation en
dc.subject.lcsh Heat -- Transmission en
dc.subject.lcsh Refrigerants en
dc.title Improved flow pattern map for accurate prediction of the heat transfer coefficients during condensation of R-134a in smooth horizontal tubes and within the low-mass flux range en_US
dc.type Postprint Article en_US


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