Document Type

Conference Paper

Journal/Book Title/Conference

AIAA SCITECH 2026 Forum

Publisher

AIAA

Location

Orlando, FL

Publication Date

1-8-2026

First Page

1

Last Page

15

Abstract

Nonequilibrium aerothermodynamic modeling of the Varda hypersonic testbed capsule is conducted with direct simulation Monte Carlo (DSMC) and computational fluid dynamics (CFD) solvers. Flowfield properties at the 78 km reentry trajectory point are extracted to compute line of sight spectral radiance using two radiative emission codes, namely HARA and NEQAIR. Computed spectra are compared to spectral radiance measured by an in situ optical emission spectroscopy payload flown on Varda’s W-2 capsule in 2025. Model comparisons to the experimental data reveal discrepancies between the HARA and NEQAIR radiative emission predictions in both overall magnitude and qualitative behavior. NEQAIR was found to under-predict spectral radiance by up to two orders of magnitude compared to HARA above 500nm. These discrepancies are described and identified as resulting from the non-Boltzmann N2 emission band models.

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