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CARS in an Inductively Coupled Plasma Torch, Part 1: High Temperature Nitrogen Thermometry

  • Dan Fries
  • , Spenser T. Stark
  • , John S. Murray
  • , Noel Clemens
  • , Philip L. Varghese
  • , Rajkumar Bhakta
  • , Elijah R. Jans
  • , Sean Kearney

Producción científica: Conference contributionrevisión exhaustiva

6 Citas (Scopus)

Resumen

The current interest in hypersonic flows and the growing importance of plasma applications necessitate the development of diagnostics for high-enthalpy flow environments. Reliable and novel experimental data at relevant conditions will drive engineering and modeling efforts forward significantly. This study demonstrates the usage of nanosecond Coherent Anti-Stokes Raman Scattering (CARS) to measure temperature in an atmospheric, high-temperature (> 5500 K) air plasma. The experimental configuration is of interest as the plasma is close to thermodynamic equilibrium and the setup is a test-bed for heat shield materials. The determination of the non-resonant background at such high-temperatures is explored and rotational-vibrational equilibrium temperatures of the N2 ground state are determined via fits of the theory to measured spectra. Results show that the accuracy of the temperature measurements is affected by slow periodic variations in the plasma, causing sampling error. Moreover, depending on the experimental configuration, the measurements can be affected by two-beam interaction, which causes a bias towards lower temperatures, and stimulated Raman pumping, which causes a bias towards higher temperatures. The successful demonstration of CARS at the present conditions, and the exploration of its sensitivities, paves the way towards more complex measurements, e.g. close to interfaces in high-enthalpy plasma flows.

Idioma originalEnglish
Título de la publicación alojadaAIAA SciTech Forum and Exposition, 2023
DOI
EstadoPublished - 2023
EventoAIAA SciTech Forum and Exposition, 2023 - Orlando, United States
Duración: ene 23 2023ene 27 2023

Serie de la publicación

NombreAIAA SciTech Forum and Exposition, 2023

Conference

ConferenceAIAA SciTech Forum and Exposition, 2023
País/TerritorioUnited States
CiudadOrlando
Período1/23/231/27/23

Nota bibliográfica

Publisher Copyright:
© 2023, American Institute of Aeronautics and Astronautics Inc, AIAA. All rights reserved.

Financiación

This work was funded by the United States Department of Energy (DOE) and its National Nuclear Security Administration (NNSA). University of Texas personnel are supported by the Department of Energy, National Nuclear Security Administration under Award Number DE-NA0003969. Sandia National Laboratories personnel were supported by DOE/NNSA Science Campaign-6 funding. Sandia National Laboratories is a multimission laboratory managed and operated by the National Technology and Engineering Solutions of Sandia, LLC, a wholly owned subsidiary of Honeywell International, Inc., for the U.S. Department of Energy’s National Nuclear Security Administration under Contract No. DE-NA0003525.

FinanciadoresNúmero del financiador
National Nuclear Security Administration
U.S. Department of Energy EPSCoRDE-NA0003525, DE-NA0003969

    ASJC Scopus subject areas

    • Aerospace Engineering

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