; ; ;
2025
Online
DOI: 10.18154/RWTH-2025-04397
URL: https://publications.rwth-aachen.de/record/1010878/files/ReadMe.pdf
URL: https://publications.rwth-aachen.de/record/1010878/files/LDV_Profiles_40kW_AIR_CH4_WS.zip
URL: https://publications.rwth-aachen.de/record/1010878/files/Narrow_band_images_40kW_AIR_CH4_WS.zip
Einrichtungen
Projekte
Inhaltliche Beschreibung (Schlagwörter)
Pulverized biomass swirl flame (frei) ; laser Doppler velocimetry (frei) ; flame visualization (frei) ; self-sustained flame (frei)
Kurzfassung
This data publication contains the quantitative values of the narrow-band imaging and laser Doppler velocimetry measurements published in the journal article ”Experimental investigation of 40kWth methane-assisted and self-sustained pulverized biomass flames”. Experiments are carried out using a pilot-scale down-fired cylindrical combustion chamber equipped with a swirl burner. Studied operating conditions of the flames of biomass/methane fuel mixtures have an identical thermal output of 40kWth, with the thermal output share of methane gradually decreasing from 50 vol.% to 0 vol.% while the biomass share (walnut shells) increased from 50 vol.% to 100 vol.% (self-sustained condition). To visualize flame structure and to identify reaction zones, narrow-band imaging is employed. Narrowband flame imaging is conducted at two different wavelengths (OH* and CH* radical band heads). A detailed flow field characterization of the respective flames is conductedby two-dimensional laser Doppler velocimetry measurements. Radial profiles of axial and tangential velocities have been determined using an optical long-range laser Doppler velocimetry (LDV) system operated in backscatter mode and mounted to a traverse. Solid fuel particles are used as flow tracers. Results and the experimental conditions from the present dataset are in depth described in the journal article.
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Dokumenttyp
Dataset
Format
online
Sprache
English
Interne Identnummern
RWTH-2025-04397
Datensatz-ID: 1010878
Beteiligte Länder
Germany
Journal Article
Experimental investigation of 40 kWth methane-assisted and self-sustained pulverized biomass flames
Proceedings of the Combustion Institute 39(3), 3343-3351 (2022) [10.1016/j.proci.2022.07.112]
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