Fiber-bundle-based 2D Raman and Rayleigh imaging for major species and temperature measurement in laminar flames

Author:

Yu Tao1,Yang Chaobo12ORCID,Sharma Priybrat1ORCID,AlRamadan Abdullah S.3,Magnotti Gaetano1ORCID

Affiliation:

1. King Abdullah University of Science and Technology

2. Institute of Engineering Thermophysics

3. Saudi Aramco

Abstract

In this Letter, we introduce a novel fiber-bundle-based 2D Raman and Rayleigh imaging system for 2D measurements of major species mole fractions and temperature in flames. A cascade of dichroic mirrors and bandpass filters separate the Raman signal associated with each major species and direct it to a custom-built four-inputs/one-output fiber bundle. The single output of the fiber bundle allows simultaneous detection of four species by using a single back-illuminated CCD camera. The novel imaging system combined with a pulse-burst laser operated at 10 kHz and a 10 kHz optical shutter is characterized from measurements in a Mckenna burner and then applied to a flame stabilized over a Santoro burner. The work is, to the best of our knowledge, the first demonstration of 2D measurements of temperature and major species (i.e., N2, O2, H2, and H2O) in H2–air diffusion flames at atmospheric pressure.

Funder

Saudi Aramco

Clean Combustion Research Center, King Abdullah University of Science and Technology

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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