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A Radiation Solver for the National Combustion CodeA methodology is given that converts an existing finite volume radiative transfer method that requires input of local absorption coefficients to one that can treat a mixture of combustion gases and compute the coefficients on the fly from the local mixture properties. The Full-spectrum k-distribution method is used to transform the radiative transfer equation (RTE) to an alternate wave number variable, g . The coefficients in the transformed equation are calculated at discrete temperatures and participating species mole fractions that span the values of the problem for each value of g. These results are stored in a table and interpolation is used to find the coefficients at every cell in the field. Finally, the transformed RTE is solved for each g and Gaussian quadrature is used to find the radiant heat flux throughout the field. The present implementation is in an existing cartesian/cylindrical grid radiative transfer code and the local mixture properties are given by a solution of the National Combustion Code (NCC) on the same grid. Based on this work the intention is to apply this method to an existing unstructured grid radiation code which can then be coupled directly to NCC.
Document ID
20150014968
Acquisition Source
Glenn Research Center
Document Type
Technical Memorandum (TM)
Authors
Sockol, Peter M.
(NASA Glenn Research Center Cleveland, OH United States)
Date Acquired
August 3, 2015
Publication Date
July 1, 2015
Subject Category
Fluid Mechanics And Thermodynamics
Report/Patent Number
E-19089
NASA/TM-2015-218815
GRC-E-DAA-TN22948
Report Number: E-19089
Report Number: NASA/TM-2015-218815
Report Number: GRC-E-DAA-TN22948
Funding Number(s)
WBS: WBS 109492.02.03.01.20.01
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Keywords
National Combustion Code
k-distribution method
radiative transfer
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