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Results 1 to 25 of 1768

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Classical local buckling of tubes having rectangular cross-sectionsKANDIL, K. S; CALLADINE, C. R.International journal of mechanical sciences. 1986, Vol 28, Num 11, pp 789-797, issn 0020-7403Article

A study of optimization for rectangular ductsZHU, Z. C; LI, Y. X; WU, J. L et al.Applied Acoustics. 1988, Vol 25, Num 2, pp 113-121, issn 0003-682XArticle

On acoustic propagation in three-dimensional rectangular ducts with flexible walls and porous liningsLAWRIE, Jane B.The Journal of the Acoustical Society of America. 2012, Vol 131, Num 3, pp 1890-1901, issn 0001-4966, 12 p., 1Article

Calcul des pulsations non-stationnaires du flux d'un gaz qui réagit lors de l'écoulement dans une cavité rectangulaire planeMAKAROV, I. G.Izvestiâ Akademii nauk SSSR. Mehanika židkosti i gaza. 1989, Num 2, pp 173-175, issn 0568-5281Article

Berechnung der 3-D-Umströmung eines quaderförmigen Körpers im Kanal = Study of a 3D flow aroun a cubic body in a channelFRANK, W; MAUCH, H.Zeitschrift für angewandte Mathematik und Mechanik. 1992, Vol 72, Num 5, pp T299-T302, issn 0044-2267Article

Boundary layer solutions to the Green's function for the extended Graetz problemMAYYA, Y. S.International journal of heat and mass transfer. 1988, Vol 31, Num 10, pp 2039-2046, issn 0017-9310Article

A finite element scheme for attenuation in ducts lined with porous material: comparison with experimentASTLEY, R. J; CUMMINGS, A.Journal of sound and vibration. 1987, Vol 116, Num 2, pp 239-263, issn 0022-460XArticle

Dry microfoams : formation and flow in a confined channelRAVEN, J.-P; MARMOTTANT, P; GRANER, F et al.The European physical journal. B, Condensed matter physics. 2006, Vol 51, Num 1, pp 137-143, issn 1434-6028, 7 p.Article

Steady-state heat transfers across an obstructed air-filled rectangular cavityNEALE, A. J; BABUS'HAQ, R. F; PROBERT, S. D et al.Chemical engineering research & design. 1988, Vol 66, Num 5, pp 458-462, issn 0263-8762Article

Flow characteristics around a valve plate installed in a duct (2nd report, Swing type valve plate installed in a chamber)KUROKAWA, J; TAKAGI, A; UCHIDA, T et al.Bulletin of the JSME. 1986, Vol 29, Num 253, pp 2062-2069, issn 0021-3764Article

Pressure Drop in Rectangular Microchannels as Compared With Theory Based on Arbitrary Cross SectionAKBARI, Mohsen; SINTON, David; BAHRAMI, Majid et al.Journal of fluids engineering. 2009, Vol 131, Num 4, issn 0098-2202, 041202.7-041202.8Conference Paper

Finite element method for solving MHD flow in a rectangular ductTEZER-SEZGIN, M; KOKSAL, S.International journal for numerical methods in engineering. 1989, Vol 28, Num 2, pp 445-459, issn 0029-5981Article

Zum Fliessen locker gepackter granularer Medien im senkrechten Schacht = Ecoulement de milieux granulaires non compacts dans des puits rectangulaires = Granular medium flow in rectangular wellFÜTTERER, G; BUGGISCH, H.Zeitschrift für angewandte Mathematik und Mechanik. 1987, Vol 67, Num 5, pp T280-T281, issn 0044-2267Article

A hybrid finite element approach to modeling sound radiation from circular and rectangular ductsDUAN, Wenbo; KIRBY, Ray.The Journal of the Acoustical Society of America. 2012, Vol 131, Num 5, pp 3638-3649, issn 0001-4966, 12 p.Article

Transmission characteristics of a tee-junction in a rectangular duct at higher-order modesLAU, Siu-Kit; LEUNG, Kwan-Hao.The Journal of the Acoustical Society of America. 2009, Vol 126, Num 6, pp 3028-3039, issn 0001-4966, 12 p.Article

Tube geometry can force switchlike transitions in the behavior of propagating bubblesDE LOZAR, A; HEAP, A; BOX, F et al.Physics of fluids (1994). 2009, Vol 21, Num 10, issn 1070-6631, 101702.1-101702.4Article

Hydrodynamic behavior of non-Newtonian fluids in a square ductHARTNETT, J. P; KWACK, E. Y; RAO, B. K et al.Journal of rheology (New York, NY). 1986, Vol 30, pp S45-S59, issn 0148-6055, supplArticle

Analyse du problème de l'écoulement gazeux dans les microcanaux par les équations quasi hydrodynamiques : Mécanique des Fluides : microfluidique : Micro-écoulements liquides et gazeux : phénomènes physiques et applications. (2ème partie) = Analysis of gas flow in micro-channels using quasi-hydrodynamic (QHD) equationsELIZAROVA, T. G; SHERETOV, Yu. V.Houille blanche (Grenoble). 2003, Num 5, issn 0018-6368, 4, 66-72 [8 p.]Article

Steady vapor bubbles in rectangular microchannelsAJAEV, Vladimir S; HOMSY, G. M.International heat transfer conference. 2002, pp 491-496, isbn 2-84299-308-X, 6 p.Conference Paper

A symmetric solution for velocity profile in laminar flow through rectangular ductsSPIGA, M; MORINI, G. L.International communications in heat and mass transfer. 1994, Vol 21, Num 4, pp 469-475, issn 0735-1933Article

Magnetohydrodynamic flow in electrodynamically coupled rectangular ductsSEZGIN, M.International journal for numerical methods in fluids. 1988, Vol 8, Num 6, pp 705-722, issn 0271-2091Article

Some three-dimensional effects during vortex generation at a straight edgeAUERBACH, D.Experiments in fluids. 1987, Vol 5, Num 6, pp 385-392, issn 0723-4864Article

An analytically predictive model for moderately rarefied gas flowVELTZKE, Thomas; THÖMING, Jorg.Journal of fluid mechanics. 2012, Vol 698, pp 406-422, issn 0022-1120, 17 p.Article

Solutal transport in rectangular nanochannels under pressure-driven flow conditionsDUTTA, Debashis.Microfluidics and nanofluidics (Print). 2011, Vol 10, Num 3, pp 691-696, issn 1613-4982, 6 p.Article

Numerical Assessment of the Mixing Performance of Different Serpentine MicrochannelsNONINO, Carlo; SAVINO, Stefano; DEL GIUDICE, Stefano et al.Heat transfer engineering. 2009, Vol 30, Num 1-2, pp 101-112, issn 0145-7632, 12 p.Conference Paper

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