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Results 1 to 25 of 184095

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AN EXPERIMENT ON THE HEAT TRANSFER CHARACTERISTICS IN THE POST-BURNOUT REGION AT HIGH SUBCRITICAL PRESSURESNISHIKAWA K; YOSHIDA S; MORI H et al.1982; NUCLEAR ENGINEERING AND DESIGN; ISSN 0029-5493; NLD; DA. 1982; VOL. 74; NO 2; PP. 233-239; BIBL. 5 REF.Article

Visual observation of two-phase flow pattern of R-22, R-134a, and R-407C in a 6.5-mm smooth tubeWANG, C.-C; CHIANG, C.-S; LU, D.-C et al.Experimental thermal and fluid science. 1997, Vol 15, Num 4, pp 395-405, issn 0894-1777Article

Etude hydraulique et thermique de l'ébullitionconvective de fluide R22 dans des canaux de section rectangulaireSaclier, François; Hopfinger, Emil.1989, 210 p.Thesis

Flow pattern and void fraction of refrigerant two-phase flow in a horizontal pipeHASHIZUME, K.Bulletin of the JSME. 1983, Vol 26, Num 219, pp 1597-1602, issn 0021-3764Article

The influence of two-phase flow on a Coriolis effect mass flow meter. DiscussionHAWKEN, P. J; HEARTY, P. F; LEMAL, C et al.ASHRAE transactions. 1985, Vol 91, Num 1, pp 310-321, issn 0001-2505Article

Frictional performance of R-22 and R-410A inside a 5.0 mm wavy diameter tubeWANG, Chi-Chung; ING YOUN CHEN; SHYU, Horng-Jye et al.International journal of heat and mass transfer. 2003, Vol 46, Num 4, pp 755-760, issn 0017-9310, 6 p.Article

Heat-transfer characteristics of an earth-probe model for a ground-source heat pump (experiments on forced-convection-boiling heat transfer in a vertical double tube: the case of small flow rates)NISHIOKA, J; SUGIYAMA, H; ARAI, T et al.Heat transfer. Japanese research. 1993, Vol 22, Num 7, pp 661-671, issn 0096-0802Article

A comparison of critical flow models for estimating two-phase flow of HCFC22 and HFC134a through short tube orificesKIM, Y; O'NEAL, D. L.International journal of refrigeration. 1995, Vol 18, Num 7, pp 447-455, issn 0140-7007Article

An experimental study of in-tube evaporation of R-22 inside a 6.5-mm smooth tubeWANG, C.-C; CHIANG, C.-S; YU, J.-G et al.International journal of heat and fluid flow. 1998, Vol 19, Num 3, pp 259-269, issn 0142-727XArticle

DETERMINATION OF THE INITIAL POINT OF NET VAPOR GENERATION IN FLOW BOILING SYSTEMS. = DETERMINATION DU POINT DE DEBUT DE FORMATION DE LA VAPEUR DANS LES SYSTEMES D'ECOULEMENT EN EBULLITIONUNAL HC.1975; INTERNATION. J. HEAT MASS TRANSFER; G.B.; DA. 1975; VOL. 18; NO 9; PP. 1095-1099; ABS. FR. ALLEM. RUSSE; BIBL. 30 REF.Article

A simulation for predicting the refrigerant flow characteristics including metastable region in adiabatic capillary tubesWONGWISESL, Somchai; SUCHATAWUT, Mathurose.International journal of energy research. 2003, Vol 27, Num 2, pp 93-109, issn 0363-907X, 17 p.Article

Analytical study of critical heat flux in two phase thermosyphon : Relationship between maximum falling liquid rate and critical heat fluxMONDE, M; MITSUTAKE, Y; KURIHARA, A et al.JSME international journal. Series B, fluids and thermal engineering. 1996, Vol 39, Num 4, pp 768-779, issn 1340-8054Article

Steady-state one-dimensional water vapor movement by diffusion and convection in a multilayered wall. DiscussionTENWOLDE, A.ASHRAE transactions. 1985, Vol 91, Num 1, pp 322-342, issn 0001-2505Article

Flow pattern of boiling in micro-channel by numerical simulationRUI ZHUAN; WEN WANG.International journal of heat and mass transfer. 2012, Vol 55, Num 5-6, pp 1741-1753, issn 0017-9310, 13 p.Article

Modeling and experiments of in-tube condensation heat transfer for R22 and its alternative refrigerantKWON, Jeong-Tae; KIM, Moo-Hwan.JSME international journal. Series B, fluids and thermal engineering. 2000, Vol 43, Num 4, pp 596-601, issn 1340-8054Article

Correlation of two-phase friction for refrigerants in small-diameter tubesMING ZHANG; WEBB, Ralph L.Experimental thermal and fluid science. 2001, Vol 25, Num 3-4, pp 131-139, issn 0894-1777Article

Condensation heat transfer and flow pattern inside a herringbone-type micro-fin tubeMIYARA, A; NONAKA, K; TANIGUCHI, M et al.International journal of refrigeration. 2000, Vol 23, Num 2, pp 141-152, issn 0140-7007Article

Experimental investigation on the hysteresis effect in vertical two-phase closed thermosyphonsONG, K. S; HAIDER-E-ALALHI, M.Applied thermal engineering. 1999, Vol 19, Num 4, pp 399-408, issn 1359-4311Article

Analysis of a bubble absorber working with R22 and five organic absorbentsSUJATHA, K. S; MANI, A; SRINIVASA MURTHY, S et al.Heat and mass transfer. 1997, Vol 32, Num 4, pp 255-259, issn 0947-7411Article

Pool boiling of R-22, R-124 and R-134a on a plain tubeCHIOU, C.-B; LU, D.-C; WANG, C.-C et al.International journal of heat and mass transfer. 1997, Vol 40, Num 7, pp 1657-1666, issn 0017-9310Article

Experimental study of critical heat flux in open two-phase thermosyphonMONDE, M; MIHARA, S; MITSUTAKE, Y et al.Heat and mass transfer. 1996, Vol 31, Num 6, pp 393-398, issn 0947-7411Article

Macroscopic spray behavior and atomization characteristics of refrigerant R22 injection under increased ambient pressureWOO ROH, Chul; MIN SOO KIM.International journal of heat and mass transfer. 2012, Vol 55, Num 11-12, pp 3307-3315, issn 0017-9310, 9 p.Article

Experimental analysis of refrigerant mixtures flow through adiabatic capillary tubesSANZOVO FIORELLI, Flavio Augusto; SILVA HUERTA, Alex Alberto; DE MATTOS SILVARES, Otavio et al.Experimental thermal and fluid science. 2002, Vol 26, Num 5, pp 499-512, issn 0894-1777Article

Prediction of two-phase condensation characteristics of some alternatives to R-22 inside air/refrigerant enhanced surface tubingSAMI, Samuel M; GRELL, J.International journal of energy research. 2000, Vol 24, Num 14, pp 1277-1290, issn 0363-907XArticle

Condensation of nonazeotropic binary refrigerant mixtures including R22 as a more volatile component inside a horizontal tubeSHIZUYA, M; ITOH, M; HIJIKATA, K et al.Journal of heat transfer. 1995, Vol 117, Num 2, pp 538-543, issn 0022-1481Article

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