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High enthalpy hypersonic boundary layer flowA theoretical and experimental study of an ionizing laminar boundary layer formed by a very high enthalpy flow (in excess of 12 eV per atom or 7000 cal/gm) with allowance for the presence of helium driver gas is described. The theoretical investigation has shown that the use of variable transport properties and their respective derivatives is very important in the solution of equilibrium boundary layer equations of high enthalpy flow. The effect of low level helium contamination on the surface heat transfer rate is minimal. The variation of ionization is much smaller in a chemically frozen boundary layer solution than in an equilibrium boundary layer calculation and consequently, the variation of the transport properties in the case of the former was not essential in the integration. The experiments have been conducted in a free piston shock tunnel, and a detailed study of its nozzle operation, including the effects of low levels of helium driver gas contamination has been made. Neither the extreme solutions of an equilibrium nor of a frozen boundary layer will adequately predict surface heat transfer rate in very high enthalpy flows.
Document ID
19730023455
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Yanow, G.
(Pennsylvania State Univ. University Park, PA, United States)
Date Acquired
September 2, 2013
Publication Date
November 6, 1972
Subject Category
Fluid Mechanics
Report/Patent Number
PSU-IRL-SCI-395
NASA-CR-135479
Report Number: PSU-IRL-SCI-395
Report Number: NASA-CR-135479
Accession Number
73N32187
Funding Number(s)
CONTRACT_GRANT: NGR-39-009-129
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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