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NTIS 바로가기Applied mathematical modelling, v.21 no.1, 1997년, pp.48 - 62
Haskew, J.T. (Department of Engineering Science and Mechanics, The University of Alabama, Tuscaloosa, ALUSA) , Sharif, M.A.R. (Address reprint requests to Dr. Sharif at the Department of Aerospace Engineering and Mechanics, The University of Alabama, P. O. Box 870280, Tuscaloosa, Alabama 35487-0280.)
AbstractComputational fluid dynamics techniques were used to analyze turbulent, incompressible flow in a vaned pipe bend that is being considered for use in the liquid propellant feed lines of the space shuttle main engine. The design is an 80° bend that incorporates two turning vanes. Comput...
AIAA Paper 91-1656 Williams 1991 Computational study of duct and pipe flows using the method of pseudo-compressibility
Ito 684 1966 Transactions of the ASME Pressure losses in vaned elbows of a circular cross-section
Br. Chem. Eng. Dimmock 2 6 302 1957 Cascade corners for ducts of circular cross-section
Cheng 1 1991 Forum on Turbulent Flows, ASME-FED On turbulent flows dominated by curvature effects
AIAA Paper 89-0276 McConnaughey 1989 The prediction of secondary flow in curved ducts of square cross-section
AIAA Paper 86-0044 Gelder 1986 Wind tunnel turning vanes of modern design
NASA CR-170992 Brophy 1984 A study of pump cavitation damage
ASME Design, Repair, and Refurbishment of Steam Turbines Tindell 13 43 1991 Computational fluid dynamics analysis of a steam power plant low pressure turbine downward exhaust hood
AIAA Paper 93-0678 Kiris 1993 Incompressible Navier-Stokes computations of rotating flows
AIAA Journal Rogers 29 4 603 1991 10.2514/3.10627 Steady and unsteady solutions of the incompressible Navier-Stokes equations
NASA TM 101051 Rogers 1988 An upwind differencing scheme for the incompressible Navier-Stokes equations
AIAA Paper 91-0610 Baldwin 1991 A one-equation turbulence transport model for high Reynolds number wall-bounded flows
NASA CR-3551 Enayet 1982 Laser Doppler measurements of laminar and turbulent flow in a pipe bend
Benedict 186 1980 Fundamentals of Pipe Flow
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