Emmert, Johannes ; Baroncelli, Martina ; Kley, Sani van der ; Pitsch, Heinz ; Wagner, Steven (2024)
Axisymmetric Linear Hyperspectral Absorption Spectroscopy and Residuum-Based Parameter Selection on a Counter Flow Burner.
In: Energies, 2019, 12 (14)
doi: 10.26083/tuprints-00015593
Article, Secondary publication, Publisher's Version
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Item Type: | Article |
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Type of entry: | Secondary publication |
Title: | Axisymmetric Linear Hyperspectral Absorption Spectroscopy and Residuum-Based Parameter Selection on a Counter Flow Burner |
Language: | English |
Date: | 19 January 2024 |
Place of Publication: | Darmstadt |
Year of primary publication: | 2019 |
Place of primary publication: | Basel |
Publisher: | MDPI |
Journal or Publication Title: | Energies |
Volume of the journal: | 12 |
Issue Number: | 14 |
Collation: | 12 Seiten |
DOI: | 10.26083/tuprints-00015593 |
Corresponding Links: | |
Origin: | Secondary publication DeepGreen |
Abstract: | Chemical species tomography enables non-invasive measurements of temperatures and concentrations in gas phase processes. In this work, we demonstrate the recently introduced linear hyperspectral absorption tomography (LHAT) on an axisymmetric counterflow burner used for speciation studies of Oxyfuel combustion. As LHAT reconstructs spectrally resolved local absorption coefficient spectra, the physical plausibility of these reconstructed spectra degrades with an over-regularization of the tomographic problem. As presented in this work, this behavior can be employed in a novel regularization parameter choice method based on the residuals of local spectroscopic fits to the reconstructed spectra. After determining the regularization parameter, the reconstructions of the temperature and water mole fraction profiles of different flames are compared to numerical simulations, showing a good agreement. |
Uncontrolled Keywords: | tomography, parameter selection, absorption spectroscopy, tunable diode laser, Oxyfuel |
Status: | Publisher's Version |
URN: | urn:nbn:de:tuda-tuprints-155934 |
Additional Information: | This article belongs to the Special Issue Tomographic and Volumetric Diagnostics in Flames |
Classification DDC: | 600 Technology, medicine, applied sciences > 620 Engineering and machine engineering |
Divisions: | 16 Department of Mechanical Engineering > Institute of Reactive Flows and Diagnostics (RSM) |
Date Deposited: | 19 Jan 2024 14:27 |
Last Modified: | 21 Mar 2024 07:23 |
SWORD Depositor: | Deep Green |
URI: | https://tuprints.ulb.tu-darmstadt.de/id/eprint/15593 |
PPN: | 51645143X |
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