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Results 1 to 25 of 17091

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A generalized correlation for refrigerant mass flow rate through adiabatic capillary tubesCHOI, Jongmin; KIM, Yongchan; HO YOUNG KIM et al.International journal of refrigeration. 2003, Vol 26, Num 8, pp 881-888, issn 0140-7007, 8 p.Article

Calculation of the specific heats and adiabatic exponent of halocarbon refrigerant vaporsCONDE, M. R.Journal of heat recovery systems. 1986, Vol 6, Num 2, pp 123-133, issn 0198-7593Article

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

Condensation performance in horizontal tubes with second-law considerationLIN, W. W; LEE, D. J; PENG, X. F et al.International journal of energy research. 2001, Vol 25, Num 11, pp 1005-1018, issn 0363-907XArticle

Experimental analysis of R22 and R407c flow through electronic expansion valveZHANG CHUAN; MA SHANWEI; CHEN JIANGPIN et al.Energy conversion and management. 2006, Vol 47, Num 5, pp 529-544, issn 0196-8904, 16 p.Article

In-tube evaporation of HCFC-22 in a 9.52 mm micro-fin/smooth tubeKUO, C. S; WANG, C. C.International journal of heat and mass transfer. 1996, Vol 39, Num 12, pp 2559-2569, issn 0017-9310Article

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

Experimental investigation on mass flow characteristics of electronic expansion valves with R22, R410A and R407CCHEN LIANG; CHEN JIANGPING; LIU JINGHUI et al.Energy conversion and management. 2009, Vol 50, Num 4, pp 1033-1039, issn 0196-8904, 7 p.Article

Numerical simulation of transients in shell and tube refrigerant evaporatorPAVKOVIC, B; VILICIC, I; MEDICA, V et al.Computational Studies. 2000, pp 457-466, isbn 1-85312-818-XConference Paper

Irreversibility analysis of a water-to-water mechanical-compression heat pumpHONGMEI LIANG; KUEHN, T. H.Energy (Oxford). 1991, Vol 16, Num 6, pp 883-896, issn 0360-5442, 14 p.Article

Flow condensation heat transfer coefficients of pure refrigerantsDONGSOO JUNG; SONG, Kil-Hong; YOUNGMOK CHO et al.International journal of refrigeration. 2003, Vol 26, Num 1, pp 4-11, issn 0140-7007, 8 p.Article

Convective boiling of halocarbon refrigerants flowing in a horizontal copper tube: an experimental studySAIZ JABARDO, José Maria; PEDONE BANDARRA, Enio FILHO.Experimental thermal and fluid science. 2000, Vol 23, Num 3-4, pp 93-104, issn 0894-1777Article

Transport properties of ternary near-azeotropic mixturesAGARWAL, R. S; RAMASWAMY, M; SRIVASTAVA, V. K et al.International journal of refrigeration. 1995, Vol 18, Num 2, pp 132-138, issn 0140-7007Article

Boiling characteristics of ternary mixtures inside enhanced surface tubingSAMI, S. M; DESJARDINS, D. E.International communications in heat and mass transfer. 2000, Vol 27, Num 8, pp 1047-1056, issn 0735-1933Article

IL-22 : A critical mediator in mucosal host defenseAUJLA, S. J; KOLLS, J. K.Journal of molecular medicine (Berlin. Print). 2009, Vol 87, Num 5, pp 451-454, issn 0946-2716, 4 p.Article

Welche Kältemittel in der Zukunft? = Which refrigerant in the future?DOÊRING, R.Die Kälte und Klimatechnik. 1990, Vol 43, Num 9, pp 472-482, issn 0343-2246, 6 p.Article

Th17 cytokines and mucosal immunityDUBIN, Patricia J; KOLLS, Jay K.Immunological reviews. 2008, Vol 226, pp 160-171, issn 0105-2896, 12 p.Article

IL-22, but Not IL-17, Dominant Environment in Cutaneous T-cell LymphomaMIYAGAKI, Tomomitsu; SUGAYA, Makoto; SUGA, Hiraku et al.Clinical cancer research (Print). 2011, Vol 17, Num 24, pp 7529-7538, issn 1078-0432, 10 p.Article

Installation avec évaporateur à air et condenseur à air = Refrigerating unit with an air evaporator and an air condenserJACQUARD, P.Revue pratique du froid et du conditionnement d'air. 1998, Num 862, pp 49-50, issn 0370-6699Article

Verwendung von KLEA 407A bei überfluteter Verdampfung = Using KLEA 407A with flooding evaporationLOW, B; TAYLOR, A.Die Kälte und Klimatechnik. 1996, Vol 49, Num 8, pp 528-531, issn 0343-2246, 3 p.Article

Austauschstoffe für R22: ein Überblick = Substitutes for R22: an overviewSCHWENNESEN, K.Die Kälte und Klimatechnik. 1994, Vol 47, Num 2, pp 59-62, issn 0343-2246, 3 p.Article

Do we understand the 22-year solar activity cycle ?PATERNO, L.Comptes rendus de l'Académie des sciences. Série IIb, mécanique, physique, astronomie. 1998, Vol 326, Num 6, pp 393-405, issn 1287-4620Article

Options techniques des constructeurs pour l'après-R 22 = Technical options for manufacturers about R 22 substituteMALEK, A; GOTH, Y.Revue pratique du froid et du conditionnement d'air. 1996, Num 833BIS, pp 49-53, issn 0370-6699Article

Le programme des R 407C et R 410B : Climatisation = R 407C and R 410B as substitutes of R 22 : Air conditioningDUBOIS, L; RINALDI, R.Revue pratique du froid et du conditionnement d'air. 1995, Num 818, pp 48-49, issn 0370-6699Article

MOLAR HEAT CAPACITY OF NON-STOICHIOMETRIC NICKEL HYBRIDES IN THE TEMPERATURE RANGE 10 TO 20 K.BARKLEIT G; WOLF G.1975; PHYS. STATUS SOLIDI, A; ALLEM.; DA. 1975; VOL. 28; NO 1; PP. 139-143; ABS. ALLEM.; BIBL. 18 REF.Article

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