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Results 1 to 25 of 598321

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

Heat transfer at pool boiling of mixtures with R22 and R114GORENFLO, D; BLEIN, P; HERRES, G et al.International journal of refrigeration. 1988, Vol 11, Num 4, pp 257-263, issn 0140-7007Article

Wärmeübergang bei Kondensation stehender Dämpfe = Heat transfer when condensing stagnant vaporsZABLOUDIL, O.ÖIAZ. 1993, Vol 138, Num 11, pp 425-428, issn 0721-9415Article

Heat transfer prediction of air-to-refrigerant two-phase flow boiling of alternatives to HCFC-22 inside air/refrigerant enhanced surface tubingSAMI, S. M; GRELL, J.International journal of energy research. 2000, Vol 24, Num 4, pp 349-363, issn 0363-907XArticle

Ammoniak in Kältesätzen. Ammoniak als klassisches Kältemittel = Ammoniac in liquid chillersREINHART, A.Klima, Kälte, Heizung. 1992, Vol 20, Num 11, pp 434-436, issn 0172-1984Article

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

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

Two-phase flow boiling characteristics of alternatives to R-22 inside air/refrigerant enhanced surface tubingSAMI, S. M; DESJARDINS, D. E.International journal of energy research. 2000, Vol 24, Num 2, pp 109-119, issn 0363-907XArticle

Comparative study of two phase flow boiling of refrigerant mixtures and pure refrigerants inside enhanced surface tubingSAMI, S. M; SCHNOTALE, J.International communications in heat and mass transfer. 1992, Vol 19, Num 1, pp 137-148, issn 0735-1933Article

Investigation on the choking flow characteristics in electronic expansion valvesJINGHUI LIU; JIANGPING CHEN; ZHIJIU CHEN et al.International journal of thermal sciences. 2008, Vol 47, Num 5, pp 648-658, issn 1290-0729, 11 p.Article

Experimental investigation of two phase flow condensation of alternatives to HCFC-22 inside enhanced surface tubingSAMI, S. M; MALTAIS, H.Applied thermal engineering. 2000, Vol 20, Num 12, pp 1113-1126, issn 1359-4311Article

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

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

Heat transfer characteristics of ternary blends inside enhanced surface tubingSAMI, S. M; TULEJ, P. J; SONG, B et al.International communications in heat and mass transfer. 1994, Vol 21, Num 4, pp 489-498, issn 0735-1933Article

Compressed liquid densities and saturation densities of chlorodifluoromethane (R22)DEFIBAUGH, D. R; MORRISON, G.Journal of chemical and engineering data (Print). 1992, Vol 37, Num 1, pp 107-110, issn 0021-9568Article

Condensation heat transfer coefficients of R22, R407C, and R410A on a horizontal plain, low fin, and turbo-C tubesJUNG, Dongsoo; KIM, Chong-Bo; HWANG, Soo-Min et al.International journal of refrigeration. 2003, Vol 26, Num 4, pp 485-491, issn 0140-7007, 7 p.Article

Enhancement of nucleate boiling heat transfer using carbon nanotubesPARK, Ki-Jung; JUNG, Dongsoo.International journal of heat and mass transfer. 2007, Vol 50, Num 21-22, pp 4499-4502, issn 0017-9310, 4 p.Article

Thermal conductivities of new refrigerants R125 and R32 measured by the transient hot-wire methodGROSS, U; SONG, Y. W.International journal of thermophysics. 1996, Vol 17, Num 3, pp 607-620, issn 0195-928X, 13 p.Conference Paper

Flow boiling heat transfer of CO2 at low temperatures in a horizontal smooth tubeCHANG YONG PARK; HRNJAK, Pega S.Journal of heat transfer. 2005, Vol 127, Num 12, pp 1305-1312, issn 0022-1481, 8 p.Article

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

Mesures de transfert local de chaleur en biphasique dans des coudes 180° et en aval = Two phase local heat transfer measurements in and downstream from a U-bendOUAZIA, B; MARVILLET, C; FEIDT, M et al.Entropie (Paris). 1992, Vol 28, Num 170, pp 58-63, issn 0013-9084Article

Wärmeübergang bei Tropfenkondensation von stehendem Dampf verschiedener Stoffe als Funktion derselben Kennzahl = Transfert de chaleur de vapeurs stagnantes de diverses substances au cours de leur condensation en goutte en fonction de leurs caractéristiques = Heat transfer of stagnant vapors of different substances during drop condensation as a function of their characteristicsZABLOUDIL, O.ÖIAZ. 1988, Vol 133, Num 6, pp 329-335, issn 0721-9415Article

Average boiling and condensation heat transfer coefficients of the zeotropic refrigerant mixture R22/R142b in a coaxial tube-in-tube heat exchangerMEYER, J. P; BUKASA, J. M; KEBONTE, S. A et al.Journal of heat transfer. 2000, Vol 122, Num 1, pp 186-188, issn 0022-1481Article

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

Prediction of evaporation heat transfer coefficient and pressure drop of refrigerant mixtures in horizontal tubesJUNG, D; RADERMACHER, R.International journal of refrigeration. 1993, Vol 16, Num 3, pp 201-209, issn 0140-7007Article

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