Comparison of coherent anti-Stokes Raman-scattering thermometry with thermocouple measurements and model predictions in both natural-gas and coal-dust flames

Mobile coherent anti-Stokes Raman-scattering equipment was applied for single-shot temperature measurements in a pilot-scale furnace with a thermal power of 300 kW, fueled with either natural gas or coal dust. Average temperatures deduced from N(2) coherent anti-Stokes Raman-scattering spectra were...

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Veröffentlicht in:Applied Optics 1995-06, Vol.34 (18), p.3303-3312
Hauptverfasser: Lückerath, R, Woyde, M, Meier, W, Stricker, W, Schnell, U, Magel, H C, Görres, J, Spliethoff, H, Maier, H
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container_end_page 3312
container_issue 18
container_start_page 3303
container_title Applied Optics
container_volume 34
creator Lückerath, R
Woyde, M
Meier, W
Stricker, W
Schnell, U
Magel, H C
Görres, J
Spliethoff, H
Maier, H
description Mobile coherent anti-Stokes Raman-scattering equipment was applied for single-shot temperature measurements in a pilot-scale furnace with a thermal power of 300 kW, fueled with either natural gas or coal dust. Average temperatures deduced from N(2) coherent anti-Stokes Raman-scattering spectra were compared with thermocouple readings for identical flame conditions. There were evident differences between the results of both techniques, mainly in the case of the natural-gas flame. For the coal-dust flame, a strong influence of an incoherent and a coherent background, which led to remarkable changes in the spectral shape of the N(2)Q-branch spectra, was observed. Therefore an algorithm had to be developed to correct the coal-dust flame spectra before evaluation. The measured temperature profiles at two different planes in the furnace were compared with model calculations.
doi_str_mv 10.1364/AO.34.003303
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title Comparison of coherent anti-Stokes Raman-scattering thermometry with thermocouple measurements and model predictions in both natural-gas and coal-dust flames
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