Publications Niklas Jüngst
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Temperature and phase evolution of individual iron and iron-oxide particles during combustion and hydrogen plasma reductionIn: Proceedings of the Combustion Institute, Vol. 42, 2026, 106178DOI (Open Access)
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Laser-induced emission from iron oxide nanoparticles in spray-flame synthesis : In situ high-speed microscopyIn: Applied Physics B: Lasers and Optics, Vol. 130, 2024, Nr. 4, 63DOI (Open Access)
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Neural networks for classification and segmentation of thermally-induced droplet breakup in spray-flame synthesisIn: Journal of Aerosol Science, Vol. 176, 2024, 106314DOI (Open Access)
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Phase changes in burning precursor-laden single droplets leading to puffing and micro-explosionIn: Experiments in Fluids, Vol. 65, 2024, Nr. 11, 170DOI (Open Access)
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A multispectral UV-vis absorption technique for quantitative high-speed field-sequential imaging of fuel films and soot in combustionIn: Proceedings of the Combustion Institute, Vol. 39, 2023, Nr. 1, pp. 1475 – 1483DOI, Online Full Text (Open Access)
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A population balance method for simulation of particle-induced droplet breakup in spray flame synthesis and suspension spray combustionIn: Applications in Energy and Combustion Science, Vol. 15, 2023, 100162DOI (Open Access)
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High-speed imaging and statistics of puffing and micro-exploding droplets in spray-flame synthesisIn: Applications in Energy and Combustion Science, Vol. 15, 2023, 100167DOI (Open Access)
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Correction to: Visualization and image analysis of droplet puffing and micro-explosion in spray-flame synthesis of iron oxide nanoparticlesIn: Experiments in Fluids, Vol. 63, 2022, Nr. 6, 103DOI (Open Access)
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Erratum to “Experimental and numerical investigation of evaporating fuel films in combustion”In: Applications in Energy and Combustion Science, Vol. 10, 2022, 100066DOI (Open Access)
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Visualization and image analysis of droplet puffing and micro-explosion in spray-flame synthesis of iron oxide nanoparticlesIn: Experiments in Fluids, Vol. 63, 2022, Nr. 3, 60DOI (Open Access)
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Endoscopic fuel film, chemiluminescence, and soot incandescence imaging in a direct-injection spark-ignition engine
38th International Symposium on Combustion ; 24 - 29 January 2021, Adelaide, Australia,In: Proceedings of the Combustion Institute, Vol. 38, 2021, Nr. 4, pp. 5869 – 5877 -
Experimental and numerical investigation of evaporating fuel films in combustionIn: Applications in Energy and Combustion Science, Vol. 7, 2021, 100033DOI (Open Access)
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Visualization of soot formation from evaporating fuel films by laser-induced fluorescence and incandescenceIn: Proceedings of the Combustion Institute, Vol. 38, 2021, Nr. 1, pp. 1089 – 1097DOI (Open Access)
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Imaging of fuel-film evaporation and combustion in a direct-injection model experiment
SAE World Congress Experience, WCX 2019, 9-11 April 2019, Detroit, United States,In: SAE Technical Papers, 2019, 2019-01-0293DOI, Online Full Text (Open Access) -
Numerical model for predicting experimental effects in enantioselective Raman spectroscopyIn: Applied Physics B: Lasers and Optics, Vol. 123, 2017, Nr. 4
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Optical diagnostics for soot formation from evaporating fuel films in combustionDuisburg, Essen, 2021DOI, Online Full Text (Open Access)