A computational study for tomographic imaging of temperature, water and carbon dioxide concentration in combustion gases using a single tunable diode laser
Satwik Choudhury, Sandip Pal

TL;DR
This study demonstrates the feasibility of simultaneous 2-D tomographic imaging of temperature, water vapor, and carbon dioxide concentrations in combustion gases using a single tunable diode laser and various reconstruction algorithms.
Contribution
It introduces a novel approach for multi-parameter imaging in combustion gases using a single laser wavelength and evaluates multiple reconstruction techniques for accuracy.
Findings
Effective imaging achieved with Filtered Landweber and Tikhonov methods.
Both fanbeam and irregular beam arrays produce promising results.
Selected spectral lines enable simultaneous temperature and concentration measurements.
Abstract
There is a present-day need of optimization of the combustion processes and catalytic efficiency for minimization of emission of pollutants, which can be possible by analyzing the temperature and combustion products distribution in the combustion processes internally. This paper discusses the feasibility of simultaneous 2-D tomographic imaging of temperature and concentrations of CO and HO by scanning a single narrowband laser. The choice of spectroscopic lines of HO for two-tone temperature measurement is discussed around the wavelength range of 2000 nm. This region is selected as both HO and CO spectral lines have sufficient intensity levels. The pair of wavenumbers (5005.53 and 5003.3 cm) is found the best of all for temperature and HO concentration distribution and 5004.36 cm is chosen for CO. To establish the efficacy of different…
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Taxonomy
TopicsSpectroscopy and Laser Applications · Atmospheric and Environmental Gas Dynamics · Laser Design and Applications
