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Critical Channel Dimensions for Open-Channel Transition DesignDAS, Amlan.Journal of irrigation and drainage engineering. 2011, Vol 137, Num 11, pp 735-742, issn 0733-9437, 8 p.Article

Direct Solution to Problems of Open-Channel Transitions : Rectangular ChannelsABDULRAHMAN, Abdulrahman.Journal of irrigation and drainage engineering. 2008, Vol 134, Num 4, pp 533-537, issn 0733-9437, 5 p.Article

Numerical computations of critical flow over a weirO'CARROLL, M. J; TORO, E. F.International journal for numerical methods in fluids. 1984, Vol 4, Num 6, pp 499-509, issn 0271-2091Article

Minimum specific energy and critical flow conditions in open channelsCHANSON, H.Journal of irrigation and drainage engineering. 2006, Vol 132, Num 5, pp 498-502, issn 0733-9437, 5 p.Article

Uniform and critical flow computationsPATIL, Ramappa G; MURTHY, J. S. R; GHOSH, L. K et al.Journal of irrigation and drainage engineering. 2005, Vol 131, Num 4, pp 375-378, issn 0733-9437, 4 p.Article

Optimal design of open channel section incorporating critical flow conditionRAJIB KUMAR BHATTACHARJYA.Journal of irrigation and drainage engineering. 2006, Vol 132, Num 5, pp 513-518, issn 0733-9437, 6 p.Article

The shape of a superfluid vortex nucleated at a sharp edgeBROWN, Y. J.Journal of low temperature physics. 1984, Vol 54, Num 1-2, pp 155-158, issn 0022-2291Article

Turbulent heating experiment in the STOR-1M tokamakSARKISSIAN, A; HIROSE, A; MITARAI, O et al.Canadian journal of physics (Print). 1989, Vol 67, Num 9, pp 884-892, issn 0008-4204Article

KRITISCHE STROEMUNGSZUSTAENDE UND MAXIMALE DURCHSATZMENGE VON NASSDAMPFSTROEMUNGEN BEI THERMISCHER NICHTGLEICHGEWICHT = FLOW CRITICAL CONDITIONS AND MAXIMAL FLOW RATE OF WET STEAM IN THERMAL NON EQUILIBRIUM CONDITIONS = CONDITIONS CRITIQUES D'ECOULEMENT ET DEBIT MAXIMAL DES ECOULEMENTS DE VAPEUR HUMIDE DANS LE CAS DE DESEQUILIBRE THERMIQUEKONORSKI A.1980; V.D.I. BER.; DEU; DA. 1980; NO 361; PP. 187-192; BIBL. 4 REF.Conference Paper

Dike-break induced flows: a simplified modelSTILMANT, F; PIROTTON, M; ARCHAMBEAU, P et al.Environmental fluid mechanics (2001). 2013, Vol 13, Num 1, pp 89-100, issn 1567-7419, 12 p.Article

CORRELATION OF EXPERIMENTAL DATA ON THE CRITICAL FLOW OF BOILING LIQUIDSLABUNTSOV DA; AVDEEV AA.1978; TEPLO ENERGETIKA; SUN; DA. 1978; NO 9; PP. 71-75; BIBL. 16 REF.Article

Transcritical shallow-water flow past topography: finite-amplitude theoryEL, G. A; GRIMSHAW, R. H. J; SMYTH, N. F et al.Journal of fluid mechanics. 2009, Vol 640, pp 187-214, issn 0022-1120, 28 p.Article

Theoretical aspects of critical flow and the velocity of sound in disperse two-phase flowGREGOR, W.Chemical engineering science. 1983, Vol 38, Num 12, pp 1971-1975, issn 0009-2509Article

Scaling considerations for two-phase critical flowGROLMES, M. A; LEUNG, J. C.Multi-phase flow and heat transfer symposium-workshop. 3. 1983, pp 259-262Conference Paper

Quasi-homogeneous critical swirling flows in expanding pipes, part IIFLEDDERUS, E. R; VAN GROESEN, E.Journal of mathematical analysis and applications. 1996, Vol 199, Num 3, pp 676-698, issn 0022-247XArticle

Débits critiques d'un liquide en ébullition et d'un gaz qui se condense en régime d'écoulement de déséquilibreRESHETNIKOV, A. V; ISAEV, O. A; SKRIPOV, V. P et al.Teplofizika vysokih temperatur. 1988, Vol 26, Num 3, pp 544-548, issn 0040-3644Article

Flow characteristics of hydrogen gas through a critical nozzleHONGBING DING; CHAO WANG; YAKUN ZHAO et al.International journal of hydrogen energy. 2014, Vol 39, Num 8, pp 3947-3955, issn 0360-3199, 9 p.Article

Etudes expérimentales de l'écoulement critique de l'eau en ébullition par un canal avec un modèle de vanneZYRYANOV, V. N; KHLESTKIN, D. A.Teploenergetika (Moskva, 1954). 1987, Num 6, pp 64-67, issn 0040-3636Article

HIGH DEFINITION: flowWRIGHT, John; MOLDOVER, Michael.Mechanical engineering (New York, N.Y. 1919). 2009, Vol 131, Num 8, pp 46-48, issn 0025-6501, 3 p.Article

Critical flow over spillway profilesCASTRO-ORGAZ, O; GIRALDEZ, J. V; AYUSO, J. L et al.Water management. 2008, Vol 161, Num 2, pp 89-95, issn 1741-7589, 7 p.Article

A FINITE ELEMENT SOLUTION FOR CRITICAL FLOW OVER A WEIRAITCHISON JM.1980; INTERNATIONAL CONFERENCE ON FINITE ELEMENTS IN FLOW PROBLEMS. 3/1980/BANFF AB; CAN; DA. 1980; VOL. 2; PP. 52-59; BIBL. 5 REF.Conference Paper

PARAMETRES LIMITES DES CARACTERISTIQUES DE DEBIT DES ETAGES DE TURBINEABLAMSKIJ VA.1978; IZVEST. VYSSH. UCHEBN. ZAVED., ENERGET.; BYS; DA. 1978; VOL. 21; NO 9; PP. 81-85; BIBL. 5 REF.Article

CRITICAL COOLANT FLOW VELOCITIES IN REACTORS HAVING PARALLEL FUEL PLATESCEKIRGE HM; URAL E.1978; COMPUTERS MATH. APPL.; GBR; DA. 1978; VOL. 4; NO 2; PP. 153-156; BIBL. 4 REF.Article

Critical shear stress and critical flow rates for initiation of rillingGILLEY, J. E; ELLIOT, W. J; LAFLEN, J. M et al.Journal of hydrology (Amsterdam). 1993, Vol 142, Num 1-4, pp 251-271, issn 0022-1694Article

New Method for the Offline Solution of Pressurized and Supercritical FlowsZIMMER, A; SCHMIDT, A; OSTFELD, A et al.Journal of hydraulic engineering (New York, N.Y.). 2013, Vol 139, Num 9, pp 935-948, issn 0733-9429, 14 p.Article

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