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Your search for [subject]Laminar flow returned 10 records. |
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A Finite difference method for solving the steady-state laminar flow through a pipe system with a constriction.
by Ignacio, Maria Celeste F.; 2001.
Subject: Laminar flow.
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The entertainment of particles by a turbulent spot in a laminar boundary layer.
by Asil, Frans Gertrud Josef; [Delft: Delft University Press], 1986.
Subject: Turbulent boundary layer; Laminar flow.
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Momentum and energy transport in laminar helical flow.
by Manlapaz, Romeo L.; Ann Arbor: University Microfilms.
Subject: Laminar flow; Force and energy -- Fluid.
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Theory of laminar film condensation.
by Fujii, Tetsu, 1931-; New York: Springer-Verlag, 1991.
Subject: Condensation; Vapors; Boundary layer; Laminar flow.
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Laminar flow analysis.
by Rogers, David F.; Cambridge: Cambridge University Press, 1992.
Subject: Boundary layer; Laminar flow; Navier-Stokes equations.
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A finite difference method for solving the steady-state laminar flow through a pipe system with a constriction.
by Ignacio, Maria Celeste Fernandez; 2001.
Subject: Finite differences; Newtonian fluids; Laminar flow; Reynolds number; Differential equations, Partial.
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Laminar-turbulent transition : IUTAM Symposium, Sendai/Japan, September 5-9, 1994.
Berlin: Springer-Verlag, 1995.
Subject: Fluid dynamics -- Congresses; Laminar flow -- Congresses; Turbulence -- Congresses.
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Laminar turbulent boundary layers : presented at Energy Sources Technology Conference, New Orleans, Louisiana, February 12-16, 1984 _ Energy-Sources Technology Conference and Exhibition (1984 : New Orleans, La.).
New York, NY (345 E. 47th St., New York 10017): American Society of Mechanical Engineers, 1984.
Subject: Fluid dynamics -- Congresses; Boundary layer -- Congresses; Laminar flow -- Congresses; Turbulence -- Congresses.
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Digital computational techniques and the laminar flow of a fluid through a helical conduit.
by Manlapaz, Romeo L.; 1968.
Subject: Laminar flow -- Mathematical models; Fluid dynamics -- Mathematical models; Fluid mechanics.
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Theory and numerical modeling of turbulent gas-particle flows and combustion.
by Zhou Lixing; Beijing: Science Press, 1993.
Subject: Turbulence -- Mathematical models; Combustion -- Mathematical models; Laminar flow -- Mathematical models.
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