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Results 1 to 25 of 590

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Understanding flowline-riser system operabilityMOKHATAB, Saeid.World oil. 2006, Vol 227, Num 5, issn 0043-8790, D.89-D.94 [5 p.]Article

Computational Investigation of Horizontal Slug Flow in Pneumatic ConveyingKUANG, S. B; CHU, K. W; YU, A. B et al.Industrial & engineering chemistry research. 2008, Vol 47, Num 2, pp 470-480, issn 0888-5885, 11 p.Article

Diagnostics and structure of nonequilibrium slug flow of wet steam in pipesSUBBOTIN, V. I; POKHVALOV, YU. YE.Heat transfer. Soviet research. 1987, Vol 19, Num 1, pp 139-147, issn 0440-5749Conference Paper

Unified drift velocity closure relationship for large bubbles rising in stagnant viscous fluids in pipesMOREIRAS, Jose; PEREYRA, Eduardo; SARICA, Cem et al.Journal of petroleum science & engineering. 2014, Vol 124, pp 359-366, issn 0920-4105, 8 p.Article

New type-curves for model identification and analysis in the slug flow or DST flow periodYU SHAOYONG; LIU WEINING.Shíyóu xuébào. 1990, Vol 11, Num 4, pp 68-76, issn 0253-2697, 9 p.Article

An improved version of drift-flux model for predicting pressure-gradient and void-fraction in vertical and near vertical slug flowADEKOMAYA, Olufemi A.Journal of petroleum science & engineering. 2014, Vol 116, pp 103-108, issn 0920-4105, 6 p.Article

The interrelation between the parameters pertinent to the structure of developed slug flow in small-diameter tubes under bubbling conditionsOMAR, Kh; POKHVALOV, Yu. E.Thermal engineering. 2007, Vol 54, Num 7, pp 583-586, issn 0040-6015, 4 p.Article

Getting rid of slugsOffshore technology. 2001, Vol 9, Num 4, pp 35-39, 3 p.Article

Slugging behaviour of fluidized beds of large particlesDE LUCA, L; DI FELICE, R; FOSCOLO, P. U et al.Powder technology. 1992, Vol 69, Num 2, pp 171-175, issn 0032-5910Article

An exact Riemann solver for a fluidized bed modelCHRISTIE, I; PALENCIA, C.IMA journal of numerical analysis. 1991, Vol 11, Num 4, pp 493-508, issn 0272-4979Article

Semi-analytical solution for a hyperbolic system modeling 1D polymer slug flow in porous mediaVICENTE, Bruno J; PRIIMENKO, Viatcheslav I; PIRES, Adolfo P et al.Journal of petroleum science & engineering. 2014, Vol 115, pp 102-109, issn 0920-4105, 8 p.Article

A simple mechanism of bubble and slug formation in Taylor flow in microchannelsPOHORECKI, R; KULA, K.Chemical engineering research & design. 2008, Vol 86, Num 9, pp 997-1001, issn 0263-8762, 5 p.Article

Production polyphasique: modélisation des écoulements à bouchons = Multiphase production: Slug flows modelisationBERNICOT, M; DROUFFE, J. M.Revue de l'Institut français du pétrole. 1989, Vol 44, Num 5, pp 567-581, issn 0020-2274, 15 p.Article

A discrete particle model for bubble-slug two-phase flowsTRAPP, J. A; MORTENSEN, G. A.Journal of computational physics (Print). 1993, Vol 107, Num 2, pp 367-377, issn 0021-9991Article

DST pressure history analysis with wellbore storage effectYU SHAOYONG; LIU WEINING.Shíyóu xuébào. 1991, Vol 12, Num 2, pp 80-88, issn 0253-2697, 9 p.Article

The parameters of slug flow in small-diameter tubes under bubbling conditionsOMAR, Kh; POKHVALOV, Yu. E.Thermal engineering. 2007, Vol 54, Num 1, pp 61-64, issn 0040-6015, 4 p.Article

Experimental validation of a simple model for gas-liquid slug flow in horizontal pipesORELL, Aluf.Chemical engineering science. 2005, Vol 60, Num 5, pp 1371-1381, issn 0009-2509, 11 p.Article

Synthesis of monodispersed nano size titania particles by alkoxide method in the presence of hydroxypropylcelluloseKUBO, Masaki; KASAHARA, Takashi; TAKEDA, Hiroaki et al.Journal of chemical engineering of Japan. 2004, Vol 37, Num 6, pp 785-790, issn 0021-9592, 6 p.Article

Structure and void fraction in a liquid slug for gas-liquid two-phase slug flowMORI, Koji; MIWA, Megumi.Heat transfer, Asian research. 2002, Vol 31, Num 4, pp 257-271, issn 1099-2871Article

Troublefree pneumatic conveyingKIMBEL, K. W.Chemical engineering (New York, NY). 1998, Vol 105, Num 4, pp 78-82, issn 0009-2460, 4 p.Article

Pressure drop and slug velocity in low-velocity pneumatic conveying of bulk solidsPAN, R; WYPYCH, P. W.Powder technology. 1997, Vol 94, Num 2, pp 123-132, issn 0032-5910Article

Characteristics of interfacial profiles in upward and downward gas-liquid two-phase plug flowSEKOGUCHI, K; MORI, K; KAJI, M et al.Heat transfer. Japanese research. 1996, Vol 25, Num 8, pp 568-579, issn 0096-0802Article

Zuschlagen von teilgefüllten Rohren = Transition from free surface to pressurized pipe flowHAGER, W. H.Gas- und Wasserfach. Wasser, Abwasser. 1995, Vol 136, Num 4, pp 200-210, issn 0016-3651Article

A unified model for slug flow in upward inclined pipesFELIZOLA, H; SHOHAM, O.Journal of energy resources technology. 1995, Vol 117, Num 1, pp 7-12, issn 0195-0738Article

Advances in two-phase flow modelingTAITEL, Y.Petroleum Engineering Symposium: future petroleum technology-vision 2020. 1994, pp 33-52Conference Paper

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