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L'étude d'un thermosiphon en forme de U avec un angle d'inclinaison faibleKRIVONOS, V. A.Inženerno-fizičeskij žurnal. 1987, Vol 53, Num 1, pp 20-26, issn 0021-0285Article
Investigation of Heat-Transfer Characterization of EDA-MWCNT/DI-Water Nanofluid in a Two-Phase Closed ThermosyphonSHANBEDI, Mehdi; ZEINALI HERIS, Saeed; BANIADAM, Majid et al.Industrial & engineering chemistry research. 2012, Vol 51, Num 3, pp 1423-1428, issn 0888-5885, 6 p.Article
Comparison of oil and aluminum-based heat storage charged with a small-scale solar parabolic troughMUSSARD, Maxime; NYDAL, Ole Jørgen.Applied thermal engineering. 2013, Vol 58, Num 1-2, pp 146-154, issn 1359-4311, 9 p.Article
Heat transfer characteristics of the closed tube aerosyphonLOCK, G. S. H; ABDURAHMAN, R. D.International journal of heat and mass transfer. 1988, Vol 31, Num 1, pp 143-152, issn 0017-9310Article
Die Thermosyphonkühlung : Anwendungsmöglichkeiten ; Voraussetzungen und Wirtschaftlichkeit des Verfahrens = Thermosyphon coolingECKERT, M.Die Kälte und Klimatechnik. 1996, Vol 49, Num 3, pp 142-150, issn 0343-2246, 6 p.Conference Paper
A one-dimensional model of a thermosyphon with known wall temperatureGORDON, M; RAMOS, E; SEN, M et al.International journal of heat and fluid flow. 1987, Vol 8, Num 3, pp 177-181, issn 0142-727XArticle
A mathematical model of transients in a thermosiphonDIKIY, N. A; MOCHALOV, A. A; YURCHENKO, T. A et al.Heat transfer. Soviet research. 1985, Vol 17, Num 5, pp 84-88, issn 0440-5749Article
Heat transfer behavior of a rectangular thermosyphon loopHUANG, B. J; ZELAYA, R.Journal of heat transfer. 1988, Vol 110, Num 2, pp 487-493, issn 0022-1481Article
Utilisation des thermosiphons diphasiques dans l'industriePIORO, L. S; KALASHNIKOV, A. YU; PIORO, I. L et al.Promyšlennaâ ènergetika. 1987, Num 6, pp 16-20, issn 0033-1155Article
Heat-removal characteristics of a combined system of concentric-tube thermosyphon and heat pumpFUKUSAKO, S; SEKI, N; YAMADA, M et al.JSME International journal. 1987, Vol 30, Num 264, pp 936-944Article
Optimal design for a thermosyphon solar water heaterSHARIAH, A; SHALABI, B.Renewable energy. 1997, Vol 11, Num 3, pp 351-361, issn 0960-1481Article
Heat transfer in a closed thermosyphon over a wide range of pressures and inclinationsGROSS, U; HAHNE, E.German chemical engineering. 1986, Vol 9, Num 5, pp 292-299, issn 0343-5539Article
Reduction of heat accumulated in a thermosyphon paddy bulk storageKIATSIRIROAT, T; DUSSADEE, N.International journal of ambient energy. 2001, Vol 22, Num 1, pp 12-18, issn 0143-0750Article
Reducing heat loss of fluids in heavy oil wellbore using two-phase closed thermosyphon sucker rodXIAN ZHANG; HONGCHANG CHE.Energy (Oxford). 2013, Vol 57, pp 352-358, issn 0360-5442, 7 p.Article
Observations on an evaporative, elbow thermosyphonLOCK, G. S. H; JIALIN FU.Journal of heat transfer. 1993, Vol 115, Num 2, pp 501-503, issn 0022-1481Article
On the verification of a hydrogen bubble flow meter used for monitoring flow rates in thermosyphon solar water heatersKHALIFA, A. J. N; MEHDI, M. M.Energy conversion and management. 1998, Vol 39, Num 12, pp 1295-1302, issn 0196-8904Article
Anpassung der Wärmeübertragung an stark wechselnde Wärmeströme durch Heat Pipes = Adaptation of heat transfer to strongly changing heat flow through heat pipesHATZFELD, Oliver; KÖHNE, Heinrich.Chemieingenieurtechnik. 2001, Vol 73, Num 12, pp 1559-1562, issn 0009-286XConference Paper
Température de l'eau et l'effet de sa vitesse sur la congélation des colonnes d'eau utilisant le phénomène des thermosiphonsVLSLOBITSKIJ, P. A; GORISLAVETS, V. M; TARAN, A. G et al.Inženerno-fizičeskij žurnal. 1988, Vol 54, Num 6, pp 942-949, issn 0021-0285Article
Choking in countercurrent flow of liquid and vapor in closed thermosiphonsBEZRODNYY, M. K.Heat transfer. Soviet research. 1987, Vol 19, Num 1, pp 108-114, issn 0440-5749Conference Paper
Heat transfer enhancement in a three-phase closed thermosyphonFENG JIANG; CHEN, Wen-Jing; ZE LIU et al.Applied thermal engineering. 2014, Vol 65, Num 1-2, pp 495-501, issn 1359-4311, 7 p.Article
Thermal modeling of a novel thermosyphonic waste heat absorption system for internal combustion enginesNWOSU, Paul Nwachukwu; NUUTINEN, Mika; LARMI, Martti et al.Energy (Oxford). 2014, Vol 71, pp 21-31, issn 0360-5442, 11 p.Article
Correlation to predict heat-transfer characteristics of a vertical flat thermosyphon (VFT) at normal operating conditionsRITTIDECH, S; SRIMUANG, W.International journal of heat and mass transfer. 2010, Vol 53, Num 25-26, pp 5984-5987, issn 0017-9310, 4 p.Article
Operation of a vertical thermosiphon reboiler experimental facility at reduced pressuresBENSON, H. R. S; SCHNABEL, T; WEBB, D. R et al.Chemical engineering research & design. 2004, Vol 82, Num 4, pp 445-456, issn 0263-8762, 12 p.Conference Paper
Thermal osciliations in liquid helium targetsWANG, L; JIA, L. X.Advances in cryogenic engineering. 2002, Vol 47, pp 1413-1420, issn 0065-2482, 8 p., bConference Paper
Experimental investigation of the hydrocarbons pool boiling on porous structuresVASILIEV, L. L; ZHURAVLYOV, A. S; NOVIKOV, M. N et al.VASILIEV, L. L; International heat transfer conference. 2002, pp 623-628, isbn 2-84299-308-X, 6 p.Conference Paper