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NASA NTRS · 20020022210

Cars Thermometry in a Supersonic Combustor for CFD Code Validation

Abstract

An experiment has been conducted to acquire data for the validation of computational fluid dynamics (CFD) codes used in the design of supersonic combustors. The primary measurement technique is coherent anti-Stokes Raman spectroscopy (CARS), although surface pressures and temperatures have also been acquired. Modern- design- of-experiment techniques have been used to maximize the quality of the data set (for the given level of effort) and minimize systematic errors. The combustor consists of a diverging duct with single downstream- angled wall injector. Nominal entrance Mach number is 2 and enthalpy nominally corresponds to Mach 7 flight. Temperature maps are obtained at several planes in the flow for two cases: in one case the combustor is piloted by injecting fuel upstream of the main injector, the second is not. Boundary conditions and uncertainties are adequately characterized. Accurate CFD calculation of the flow will ultimately require accurate modeling of the chemical kinetics and turbulence-chemistry interactions as well as accurate modeling of the turbulent mixing

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Cutler, A. D., Danehy, P. M., Springer, R. R., DeLoach, R., Capriotti, D. P.. 2002-01-01. Cars Thermometry in a Supersonic Combustor for CFD Code Validation. https://ntrs.nasa.gov/citations/20020022210

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