Similar Solutions For The Compressible Boundary Layer On A Yawed Cylinder With Transpiration Cooling PDF Download

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Similar Solutions for the Compressible Boundary Layer on a Yawed Cylinder with Transpiration Cooling

Similar Solutions for the Compressible Boundary Layer on a Yawed Cylinder with Transpiration Cooling
Author: Ivan E. Beckwith
Publisher:
Total Pages: 44
Release: 1959
Genre: Boundary layer
ISBN:

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Heat-transfer and skin-friction parameters obtained from exact solutions to the laminar compressible boundary-layer equations for infinite cylinders in yaw are presented. The effects of transpiration cooling, Prandtl number, pressure gradient, wall temperature, and viscosity relation were investigated. It is shown that as the Mach number is increased for a given large yaw angle the effects of pressure gradient become larger and the quantity of coolant required to maintain a given wall temperature is also increased. The use of a linear viscosity-temperature relation gives approximately the same results as the Sutherland viscosity-temperature relation except for very high aerodynamic heating rates.


The Compressible Laminar Boundary Layer with Fluid Injection

The Compressible Laminar Boundary Layer with Fluid Injection
Author: George M. Low
Publisher:
Total Pages: 38
Release: 1955
Genre: Aerodynamic heating
ISBN:

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A solution of the equations of the compressible laminar boundary layer including the effects of transpiration cooling is presented. The analysis applies to the flow over an isothermal porous plate with a velocity of fluid injection proportional to the reciprocal of the square root of the distance from the leading edge.


NASA Technical Report

NASA Technical Report
Author:
Publisher:
Total Pages: 510
Release: 1964
Genre: Aerodynamics
ISBN:

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Heterogeneous Combustion

Heterogeneous Combustion
Author: Hans G. Wolfhard
Publisher: Academic Press
Total Pages: 782
Release: 2014-12-03
Genre: Technology & Engineering
ISBN: 148327683X

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Progress in Astronautics and Aeronautics—Volume 15: Heterogeneous Combustion focuses on the processes, reactions, methodologies, and techniques involved in heterogeneous combustion. The selection first offers information on the techniques for the study of combustion of beryllium and aluminum particles, study of quenched aluminum particle combustion, and spectroscopic investigation of metal combustion. Discussions focus on the combustion of metal particles in a hot oxidizing atmosphere, experimental apparatus and procedure, selected examples of residue observations, ignition of beryllium, and photographic study of particle combustion. The text then takes a look at the analytical developments, experimental observations in oxygen atmospheres, and experimental observations in carbon dioxide atmospheres of vapor-phase diffusion flames in the combustion of magnesium and aluminum. The publication ponders on the combustion of elemental boron with fluorine, combustion of pyrolytic boron nitride, characteristics of diborane flames, oxidation of diethyldiborane, and reaction of pentaborane and hydrazine and structure of the adduct. The selection is a dependable reference for readers interested in heterogeneous combustion.