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An analysis of a charring ablator with thermal nonequilibrium, chemical kinetics, and mass transferThe differential equations governing the transient response of a one-dimensional ablative thermal protection system are presented for thermal nonequilibrium between the pyrolysis gases and the char layer and with finite rate chemical reactions occurring. The system consists of three layers (the char layer, the uncharred layer, and an optical insulation layer) with concentrated heat sinks at the back surface and between the second and third layers. The equations are solved numerically by using a modified implicit finite difference scheme to obtain solutions for the thickness of the charred and uncharred layers, surface recession and pyrolysis rates, solid temperatures, porosity profiles, and profiles of pyrolysis-gas temperature, pressure, composition, and flow rate. Good agreement is obtained between numerical results and exact solutions for a number of simplified cases. The complete numerical analysis is used to obtain solutions for an ablative system subjected to a constant heating environment. Effects of thermal, chemical, and mass transfer processes are shown.
Document ID
19730017234
Acquisition Source
Legacy CDMS
Document Type
Other - NASA Technical Note (TN)
Authors
Clark, R. K.
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
August 7, 2013
Publication Date
June 1, 1973
Subject Category
Thermodynamics And Combustion
Report/Patent Number
L-8670
NASA-TN-D-7180
Report Number: L-8670
Report Number: NASA-TN-D-7180
Accession Number
73N25961
Funding Number(s)
PROJECT: RTOP 502-27-02-01
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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