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An Experimental Investigation of the Reynolds Analogy and its Modifications Applied to Annular Condensation Laminar Flow of R134a in a Vertical Tube

dc.contributor.authorDalkilic, A. S.
dc.contributor.authorKundu, B.
dc.contributor.authorWongwises, S.
dc.contributor.institutionauthorDALKILIÇ, Ahmet Selim
dc.date.accessioned2026-06-27T13:23:55Z
dc.date.issued2013
dc.description.abstractThe Reynolds analogy and its modifications are applied to forced convection laminar in-tube condensation to predict the heat transfer coefficient of R134a by means of well-known two-phase friction factors and agreed void fraction models and correlations explained in the authors' previous works. The vertical test section is a 0.5 m long countercurrent flow double tube heat exchanger with refrigerant flowing in the inner smooth copper tube (8.1 mm i.d.) and cooling water flowing in the annulus (26 mm i.d.). The test runs are performed at average saturated condensing temperatures of 40 A degrees C (Pr = 0.92) and 50 A degrees C (Pr = 0.97). The heat fluxes are between 10.16 and 66.61 kW m(-2) while the mass fluxes are between 260 and 515 kg m(-2) s(-1) for the vertical test sections. The Reynolds' model is modified by various two-phase flow models and correlations to account for the partial condensation inside the tube. The refrigerant side heat transfer coefficients are determined within +/- 30% using the two-phase friction factors of Wallis, Moeck, Fore et al., while all the proposed friction factor correlations for the Reynolds analogy, Prandtl and Taylor analogy, and Colburn analogy predict the experimental friction factor within a +/- 20% deviation band. The importance of altering the Prandtl number to the Reynolds analogy (Pr = 1) is also shown in the paper.en
dc.description.sponsorshipKing Mongkut's University of Technology Thonburi (KMUTT)
dc.description.sponsorshipKMUTT
dc.description.sponsorshipThailand Research Fund
dc.description.sponsorshipNational Research University Project
dc.description.urihttps://doi.org/10.1007/s13369-013-0595-0
dc.identifier.doi10.1007/s13369-013-0595-0
dc.identifier.endpage1507
dc.identifier.issn1319-8025
dc.identifier.issue6
dc.identifier.startpage1493
dc.identifier.urihttps://hdl.handle.net/20.500.14981/52626
dc.identifier.volume38
dc.identifier.wos000319075100019
dc.language.isoeng
dc.publisherSPRINGER HEIDELBERG
dc.relation.ispartofARABIAN JOURNAL FOR SCIENCE AND ENGINEERING
dc.subjectColburn analogy
dc.subjectCondensation
dc.subjectFilm thickness
dc.subjectFriction factor
dc.subjectPrandtl and Taylor analogy
dc.subjectReynolds analogy
dc.subjectR134a
dc.subjectVoid fraction
dc.subjectHEAT-TRANSFER COEFFICIENT
dc.subjectVOID FRACTION MODELS
dc.subjectHIGH-MASS FLUX
dc.subjectFRICTIONAL PRESSURE-DROP
dc.subjectSMOOTH TUBE
dc.subjectDOWNWARD FLOW
dc.subjectINTERFACIAL FRICTION
dc.subjectREFRIGERANT HFC-134A
dc.subjectPATTERN TRANSITION
dc.subjectHORIZONTAL TUBES
dc.subjectScience & Technology - Other Topics
dc.titleAn Experimental Investigation of the Reynolds Analogy and its Modifications Applied to Annular Condensation Laminar Flow of R134a in a Vertical Tube
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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