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A NEW DIMENSION IN UNDERWATER MAINTENANCEDEVOLUY RP.1974; MATER. PERFORM.; U.S.A.; DA. 1974; VOL. 13; NO 10; PP. 11-16; BIBL. 11 REF.Article
NONLINEAR ASTROPHYSICAL DYNAMOS: MULTIPLE-PERIOD DYNAMO WAVE OSCILLATIONS AND LONG-TERM MODULATIONS OF THE 22 YEAR SOLAR CYCLEYOSHIMURA H.1978; ASTROPHYS. J.; USA; DA. 1978; VOL. 226; NO 1; PP. 706-719; BIBL. 42 REF.Article
NONRADIAL PULSATIONS IN EARLY TO MID-B STARS.SMITH MA.1977; ASTROPHYS. J.; U.S.A.; DA. 1977; VOL. 215; NO 2 PART. 1; PP. 574-583; BIBL. 26 REF.Article
Konzentrationsverschiebung beim Einsatz von Kältemittelgemischen = Concentrationshift when applying refrigerant mixturesKRUSE, H; CHEN, J.KI. Luft- und Kältetechnik. 1996, Vol 32, Num 11, pp 501-504, issn 0945-0459Article
Flow boiling characteristics of refrigerant mixture R22/R114 in the annulus of enhanced surface tubingSAMI, S. M; DUONG, T. N.International journal of energy research. 1992, Vol 16, Num 3, pp 241-252, issn 0363-907XArticle
A study on the application of nonazeotropic refrigerant mixture cycles to small-temperature-difference power-generation systemsMURATA, A; TAKAZAWA, H; KAJIKAWA, T et al.Heat transfer. Japanese research. 1992, Vol 21, Num 7, pp 649-665, issn 0096-0802Article
Caloric properties of mixtures of refrigerants R22/R114STEPHAN, K; MRZYGLOD, M.Fluid phase equilibria. 1991, Vol 70, Num 2-3, pp 175-184, issn 0378-3812Conference Paper
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
Development of a high-efficiency domestic refrigerator using CFC substitutesWU, Y; XIE, G; LI, X. Z et al.International journal of refrigeration. 1994, Vol 17, Num 3, pp 205-208, issn 0140-7007Article
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
Thermodynamic performance limit considérations for dual-evaporator, non-azeotropic refrigerant mixture-based domestic refrigerator-freezer systemsSMITH, M. K; HEUN, M. C; CRAWFORD, R. R et al.International journal of refrigeration. 1990, Vol 13, Num 4, pp 237-242, issn 0140-7007Article
Vorausbestimmung der Eigenschaften von Öl-Kältemittelgemischen = Prédiction des caractéristiques de mélanges huile/fluide frigorigène = Prediction of refrigerant oil mixture characteristicsHESSE, U.Klima, Kälte, Heizung. 1989, Vol 17, Num 11, pp 521-524, issn 0172-1984Article
Anlagenleistungsmessungen mit dem zeotropen FKW-Gemisch R 407C = Capacity measurements with zeotropic FC-blend R 407 CAHNEFELD, G; WOBST, E.KI. Luft- und Kältetechnik. 1995, Vol 31, Num 3, pp 134-138, issn 0945-0459Article
Consideration of the performance of a vapour-compression heat-pump cycle using non-azeotropic refrigerant mixturesMIYARA, A; KOYAMA, S; FUJII, T et al.International journal of refrigeration. 1992, Vol 15, Num 1, pp 35-40, issn 0140-7007Article
Wave driven non-linear flow oscillator for the 22-year solar cycleMAYR, Hans G; WOLFF, Charles L; HARTLE, Richard E et al.Geophysical research letters. 2001, Vol 28, Num 3, pp 463-466, issn 0094-8276Article
Determination of optimum working conditions in heat-pumps using nonazeotropic refrigerant mixturesCOMAKLI, Ö; CELIK, C; ERDOGAN, S et al.Energy conversion and management. 1999, Vol 40, Num 2, pp 193-203, issn 0196-8904Article
Prediction of two phase flow condensation of pure and refrigerant mixtures on enhanced surface tubingSAMI, S. M; SCHNOTALE, J.International communications in heat and mass transfer. 1992, Vol 19, Num 2, pp 191-202, issn 0735-1933Article
Performance evaluation of a heat pump cycle using NARMs by a simulation with equations of heat transfer and pressure dropMIYARA, A; KOYAMA, S; FUJII, T et al.International journal of refrigeration. 1993, Vol 16, Num 3, pp 161-168, issn 0140-7007Article
Calculation methods for comparing the performance of pure and mixed working fluids in heat pump applicationsHÖGBERG, M; VAMLING, L; BERNSTSSON, T et al.International journal of refrigeration. 1993, Vol 16, Num 6, pp 403-413, issn 0140-7007Article
Experimental study of the heat transfer characteristics of refrigerant mixture R-22/R-114 in the annulus of enhanced surface tubingSAMI, S. M; DUONG, T. N.International communications in heat and mass transfer. 1991, Vol 18, Num 4, pp 547-558, issn 0735-1933Article
Forced convective boiling of monazeotropic refrigerant mixtures of R22 and R114 inside a horizontal tubeTAKAMATSU, H; MIYARA, A; KOYAMA, S et al.Heat transfer. Japanese research. 1990, Vol 19, Num 3, pp 68-82, issn 0096-0802, 15 p.Article
Forced convective condensation and boiling of ternary non-azeotropic refrigerant mixtures inside water/refrigerant enhanced surface tubingSAMI, S. M; TULEJ, P. J; SONG, B et al.International journal of energy research. 1994, Vol 18, Num 8, pp 751-764, issn 0363-907XArticle
Prediction of the condensation and boiling characteristics of R12 substitutes R22/R152a/R114 and R22/R152a/R124 inside enhanced-surface tubingSAMI, S. M; SCHNOTALE, J; SMALE, J. G et al.International journal of energy research. 1994, Vol 18, Num 8, pp 727-740, issn 0363-907XArticle
Experiences of a nonazeotropic mixture as replacement for CFC12HOGBERG, M; BERNTSSON, T.Heat recovery systems & CHP. 1994, Vol 14, Num 3, pp 279-286, issn 0890-4332Conference Paper
Thermodynamic state surface and cycle analysis for Refrigerant 22+Refrigerant 114 systemKAGAWA, N; IKEDA, H; KAWANO, H et al.JSME international journal. Series 2, Fluids engineering, heat transfer, power, combustion, thermophysical properties. 1992, Vol 35, Num 1, pp 116-123, issn 0914-8817Article