Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset

This paper presents a correlation to obtain the surface species concentration on a stagnation point with mass injection for hypersonic flow. The correlation can be used to determine surface recombination heat fluxes and oxidation levels for ablatives or actively cooled heat shields in thermochemical...

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Main Authors: Ewenz Rocher, M, Hermann, T, McGilvray, M, Gollan, R
Format: Dataset
Language:English
Published: University of Oxford 2022
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author Ewenz Rocher, M
Hermann, T
McGilvray, M
Gollan, R
author_facet Ewenz Rocher, M
Hermann, T
McGilvray, M
Gollan, R
author_sort Ewenz Rocher, M
collection OXFORD
description This paper presents a correlation to obtain the surface species concentration on a stagnation point with mass injection for hypersonic flow. The correlation can be used to determine surface recombination heat fluxes and oxidation levels for ablatives or actively cooled heat shields in thermochemical equilibrium flow. It explicitly expresses the wall species concentration as a function of freestream conditions, coolant properties, and the stagnation-point geometry, revealing the direct effect of the aforementioned parameters on the desired quantity. The method was compared against the numerically obtained self-similar solution and showed an accuracy of�4%. The concentration depends on the boundary-layer edge pressure, temperature, and velocity gradient, as well as the wall temperature and injected mass flux. The molar mass and diffusion coefficient are further needed for scaling if the injected gas differs from the freestream gas.
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spelling oxford-uuid:06a86220-7ebd-4a18-8516-c4cf25be02372022-11-29T15:11:34ZCorrelation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - DatasetDatasethttp://purl.org/coar/resource_type/c_ddb1uuid:06a86220-7ebd-4a18-8516-c4cf25be0237EnglishHyrax DepositUniversity of Oxford2022Ewenz Rocher, MHermann, TMcGilvray, MGollan, RThis paper presents a correlation to obtain the surface species concentration on a stagnation point with mass injection for hypersonic flow. The correlation can be used to determine surface recombination heat fluxes and oxidation levels for ablatives or actively cooled heat shields in thermochemical equilibrium flow. It explicitly expresses the wall species concentration as a function of freestream conditions, coolant properties, and the stagnation-point geometry, revealing the direct effect of the aforementioned parameters on the desired quantity. The method was compared against the numerically obtained self-similar solution and showed an accuracy of�4%. The concentration depends on the boundary-layer edge pressure, temperature, and velocity gradient, as well as the wall temperature and injected mass flux. The molar mass and diffusion coefficient are further needed for scaling if the injected gas differs from the freestream gas.
spellingShingle Ewenz Rocher, M
Hermann, T
McGilvray, M
Gollan, R
Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset
title Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset
title_full Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset
title_fullStr Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset
title_full_unstemmed Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset
title_short Correlation for Species Concentration on a Hypersonic Stagnation Point with Mass Injection - Dataset
title_sort correlation for species concentration on a hypersonic stagnation point with mass injection dataset
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AT mcgilvraym correlationforspeciesconcentrationonahypersonicstagnationpointwithmassinjectiondataset
AT gollanr correlationforspeciesconcentrationonahypersonicstagnationpointwithmassinjectiondataset