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Turbulent Flow

Chan Mou Tchen, Galen Brandt Schubauer

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Princeton University Press img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Physik, Astronomie

Beschreibung

Part of the Princeton Aeronautical Paperback series designed to bring to students and research engineers outstanding portions of the twelve-volume High Speed Aerodynamics and Jet Propulsion series. These books have been prepared by direct reproduction of the text from the original series and no attempt has been made to provide introductory material or to eliminate cross reference to other portions of the original volumes.

Originally published in 1945.

The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905.

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Schlagwörter

Non-Newtonian fluid, Pressure gradient, Thermal conductivity, Enthalpy, Damping, Aerodynamic heating, Heat transfer, Scattering, Laminar flow, Non-equilibrium thermodynamics, Flow conditions, Reynolds stress, Reynolds equation, Length scale, Vorticity, Shear stress, Bernoulli's principle, Internal energy, Reynolds analogy, Laminar sublayer, Prandtl number, Perfect gas, Heat transfer coefficient, Skin friction drag, Turbulent diffusion, Intermittency, Rayleigh dissipation function, Dynamic pressure, Mean motion, Autocorrelation, Vortex sheet, Anisotropy, Compressibility, Heat capacity ratio, Nozzle, Adverse pressure gradient, Reynolds number, Continuity equation, Turbulent Prandtl number, Power law, Quantity, Proportionality (mathematics), Ideal gas, Kinetic theory of gases, Equations of motion, 0O, Law of the wall, Relative velocity, Viscosity, Eddy diffusion, Navier–Stokes equations, Shear flow, Eddy (fluid dynamics), Diffusion process, Equation of state (cosmology), Momentum transfer, Boundary layer thickness, Velocity gradient, Dissipation, Mach number, Coefficient, Potential flow, Stagnation temperature, Temperature, Incompressible flow, Schmidt number, Molecular diffusion, Boundary layer, Conservative vector field, Compressible flow