

Popp, Sebastian; Hartl, Sandra; Butz, David; Geyer, Dirk; Dreizler, Andreas; Vervisch, Luc; Hasse, Christian
Assessing multi-regime combustion in a novel burner configuration with large eddy simulations using tabulated chemistry Journal Article
In: Proceedings of the Combustion Institute, vol. 38, no. 2, pp. 2551–2558, 2021.
@article{Popp.2021,
title = {Assessing multi-regime combustion in a novel burner configuration with large eddy simulations using tabulated chemistry},
author = {Sebastian Popp and Sandra Hartl and David Butz and Dirk Geyer and Andreas Dreizler and Luc Vervisch and Christian Hasse},
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Butz, David; Hartl, Sandra; Popp, Sebastian; Walther, Steffen; Barlow, Robert S.; Hasse, Christian; Dreizler, Andreas; Geyer, Dirk
Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics Journal Article
In: Combustion and Flame, vol. 210, pp. 426–438, 2019.
@article{Butz.2019b,
title = {Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics},
author = {David Butz and Sandra Hartl and Sebastian Popp and Steffen Walther and Robert S. Barlow and Christian Hasse and Andreas Dreizler and Dirk Geyer},
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Butz, David; Hartl, Sandra; Popp, Sebastian; Walther, Steffen; Barlow, Robert S.; Hasse, Christian; Dreizler, Andreas; Geyer, Dirk
Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics Journal Article
In: Combustion and Flame, vol. 210, pp. 426–438, 2019.
@article{Butz.2019,
title = {Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics},
author = {David Butz and Sandra Hartl and Sebastian Popp and Steffen Walther and Robert S. Barlow and Christian Hasse and Andreas Dreizler and Dirk Geyer},
url = {https://www.sciencedirect.com/science/article/pii/S0010218019303967},
doi = {10.1016/j.combustflame.2019.08.032},
year = {2019},
date = {2019-01-01},
journal = {Combustion and Flame},
volume = {210},
pages = {426–438},
abstract = {In practical applications, partial premixing of fuel and oxidizer, as well as recirculation of combustion products, result in complex combustion scenarios where multi-regime effects arise and a numerical representation of local reaction zones by purely premixed or purely non-premixed flame structures may not hold. Here, a novel burner system is introduced to investigate the fundamental characteristics of multi-regime combustion and to provide a basis for validating numerical models. This multi-regime burner (MRB) is specifically designed to produce flames with multi-regime characteristics while maintaining well-defined boundary conditions. Thermochemical data from Raman/Rayleigh/CO-LIF scattering experiments are provided for two selected operating conditions. The experimental investigation focuses on the overall flame structure by examining radial profiles of temperature and mixture fraction, as well as scatter plots of temperature, CH4, and CO versus mixture fraction. In order to assess the relative importance of different flame regimes, the gradient-free regime identification (GFRI) approach is extended to allow for an automated classification of local reaction zone structures. Classification criteria are defined, based on the ratio of local heat release rate peaks associated with premixed and non-premixed reaction zones located in close spatial proximity, and an automated process is implemented to classify 1D Raman/Rayleigh sample lines as premixed, dominantly premixed, multi-regime, dominantly non-premixed, or non-premixed flame zones. The importance of different flame zones, indicated by their population fractions, are found to evolve with downstream distance and show distinct differences between the two selected flames. Further, a prior analysis is used to test the applicability of 1D flame structure assumptions for the underlying combustion regime.},
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Hartl, S.; Winkle, R.; Geyer, D.; Dreizler, A.; Magnotti, G.; Hasse, C.; Barlow, R. S.
Assessing the relative importance of flame regimes in Raman/Rayleigh line measurements of turbulent lifted flames Journal Article
In: Proceedings of the Combustion Institute, vol. 37, no. 2, pp. 2297–2305, 2019.
@article{Hartl.2019,
title = {Assessing the relative importance of flame regimes in Raman/Rayleigh line measurements of turbulent lifted flames},
author = {S. Hartl and R. Winkle and D. Geyer and A. Dreizler and G. Magnotti and C. Hasse and R. S. Barlow},
doi = {10.1016/j.proci.2018.06.067},
year = {2019},
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journal = {Proceedings of the Combustion Institute},
volume = {37},
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Hartl, Sandra; Geyer, Dirk; Hasse, Christian; Zhao, Xinyu; Wang, Haiou; Barlow, Robert S.
Assessing an experimental approach for chemical explosive mode and heat release rate using DNS data Journal Article
In: Combustion and Flame, vol. 209, pp. 214–224, 2019.
@article{Hartl.2019b,
title = {Assessing an experimental approach for chemical explosive mode and heat release rate using DNS data},
author = {Sandra Hartl and Dirk Geyer and Christian Hasse and Xinyu Zhao and Haiou Wang and Robert S. Barlow},
doi = {10.1016/j.combustflame.2019.07.038},
year = {2019},
date = {2019-01-01},
journal = {Combustion and Flame},
volume = {209},
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abstract = {Combustion and Flame, 209 (2019) 214-224. doi:10.1016/j.combustflame.2019.07.038},
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Schneider, Silvan; Geyer, Dirk; Magnotti, Gaetano; Dunn, Matthew J.; Barlow, Robert S.; Dreizler, Andreas
Structure of a stratified CH4 flame with H2 addition Journal Article
In: Proceedings of the Combustion Institute, vol. 37, no. 2, pp. 2307–2315, 2019.
@article{Schneider.2019,
title = {Structure of a stratified CH4 flame with H2 addition},
author = {Silvan Schneider and Dirk Geyer and Gaetano Magnotti and Matthew J. Dunn and Robert S. Barlow and Andreas Dreizler},
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journal = {Proceedings of the Combustion Institute},
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Straub, C.; Kronenburg, A.; Stein, O. T.; Barlow, R. S.; Geyer, D.
Modeling stratified flames with and without shear using multiple mapping conditioning Journal Article
In: Proceedings of the Combustion Institute, vol. 37, no. 2, pp. 2317–2324, 2019.
@article{Straub.2019,
title = {Modeling stratified flames with and without shear using multiple mapping conditioning},
author = {C. Straub and A. Kronenburg and O. T. Stein and R. S. Barlow and D. Geyer},
doi = {10.1016/j.proci.2018.07.033},
year = {2019},
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journal = {Proceedings of the Combustion Institute},
volume = {37},
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Butz, David; Hartl, Sandra; Popp, Sebastian; Walther, Steffen; Barlow, Robert S.; Hasse, Christian; Dreizler, Andreas; Geyer, Dirk
Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics Journal Article
In: Combustion and Flame, vol. 210, pp. 426–438, 2019.
@article{Butz.2019d,
title = {Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics},
author = {David Butz and Sandra Hartl and Sebastian Popp and Steffen Walther and Robert S. Barlow and Christian Hasse and Andreas Dreizler and Dirk Geyer},
year = {2019},
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Straub, Carmen; Kronenburg, Andreas; Stein, Oliver T.; Kuenne, Guido; Janicka, Johannes; Barlow, Robert S.; Geyer, Dirk
Multiple mapping conditioning coupled with an artificially thickened flame model for turbulent premixed combustion Journal Article
In: Combustion and Flame, vol. 196, pp. 325–336, 2018.
@article{Straub.2018,
title = {Multiple mapping conditioning coupled with an artificially thickened flame model for turbulent premixed combustion},
author = {Carmen Straub and Andreas Kronenburg and Oliver T. Stein and Guido Kuenne and Johannes Janicka and Robert S. Barlow and Dirk Geyer},
doi = {10.1016/j.combustflame.2018.05.021},
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Hartl, Sandra; Geyer, Dirk; Dreizler, Andreas; Magnotti, Gaetano; Barlow, Robert S.; Hasse, Christian
Regime identification from Raman/Rayleigh line measurements in partially premixed flames Journal Article
In: Combustion and Flame, vol. 189, pp. 126–141, 2018.
@article{Hartl.2018,
title = {Regime identification from Raman/Rayleigh line measurements in partially premixed flames},
author = {Sandra Hartl and Dirk Geyer and Andreas Dreizler and Gaetano Magnotti and Robert S. Barlow and Christian Hasse},
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Eitel, Felix; Pareja, Jhon; Johchi, Ayane; Böhm, Benjamin; Geyer, Dirk; Dreizler, Andreas
Temporal evolution of auto-ignition of ethylene and methane jets propagating into a turbulent hot air co-flow vitiated with NO x Journal Article
In: Combustion and Flame, vol. 177, pp. 193–206, 2017.
@article{Eitel.2017,
title = {Temporal evolution of auto-ignition of ethylene and methane jets propagating into a turbulent hot air co-flow vitiated with NO x},
author = {Felix Eitel and Jhon Pareja and Ayane Johchi and Benjamin Böhm and Dirk Geyer and Andreas Dreizler},
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Stahler, Thabo; Geyer, Dirk; Magnotti, Gaetano; Trunk, Philipp; Dunn, Matthew J.; Barlow, Robert S.; Dreizler, Andreas
Multiple conditioned analysis of the turbulent stratified flame A Journal Article
In: Proceedings of the Combustion Institute, vol. 36, no. 2, pp. 1947–1955, 2017.
@article{Stahler.2017,
title = {Multiple conditioned analysis of the turbulent stratified flame A},
author = {Thabo Stahler and Dirk Geyer and Gaetano Magnotti and Philipp Trunk and Matthew J. Dunn and Robert S. Barlow and Andreas Dreizler},
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Eitel, Felix; Pareja, Jhon; Geyer, Dirk; Johchi, Ayane; Michel, Florian; Elsäßer, Wolfgang; Dreizler, Andreas
A novel plasma heater for auto-ignition studies of turbulent non-premixed flows Journal Article
In: Experiments in Fluids, vol. 56, no. 10, 2015.
@article{Eitel.2015,
title = {A novel plasma heater for auto-ignition studies of turbulent non-premixed flows},
author = {Felix Eitel and Jhon Pareja and Dirk Geyer and Ayane Johchi and Florian Michel and Wolfgang Elsäßer and Andreas Dreizler},
doi = {10.1007/s00348-015-2059-7},
year = {2015},
date = {2015-01-01},
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Fiorina, B.; Mercier, R.; Kuenne, G.; Ketelheun, A.; Avdić, A.; Janicka, J.; Geyer, D.; Dreizler, A.; Alenius, E.; Duwig, C.; Trisjono, P.; Kleinheinz, K.; Kang, S.; Pitsch, H.; Proch, F.; Marincola, F. Cavallo; Kempf, A.
Challenging modeling strategies for LES of non-adiabatic turbulent stratified combustion Journal Article
In: Combustion and Flame, vol. 162, no. 11, pp. 4264–4282, 2015.
@article{Fiorina.2015,
title = {Challenging modeling strategies for LES of non-adiabatic turbulent stratified combustion},
author = {B. Fiorina and R. Mercier and G. Kuenne and A. Ketelheun and A. Avdić and J. Janicka and D. Geyer and A. Dreizler and E. Alenius and C. Duwig and P. Trisjono and K. Kleinheinz and S. Kang and H. Pitsch and F. Proch and F. Cavallo Marincola and A. Kempf},
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}
Magnotti, G.; Geyer, D.; Barlow, R. S.
Interference free spontaneous Raman spectroscopy for measurements in rich hydrocarbon flames Journal Article
In: Proceedings of the Combustion Institute, vol. 35, no. 3, pp. 3765–3772, 2015.
@article{Magnotti.2015,
title = {Interference free spontaneous Raman spectroscopy for measurements in rich hydrocarbon flames},
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Popp, Sebastian; Hartl, Sandra; Butz, David; Geyer, Dirk; Dreizler, Andreas; Vervisch, Luc; Hasse, Christian
Assessing multi-regime combustion in a novel burner configuration with large eddy simulations using tabulated chemistry Journal Article
In: Proceedings of the Combustion Institute, vol. 38, no. 2, pp. 2551–2558, 2021.
@article{Popp.2021,
title = {Assessing multi-regime combustion in a novel burner configuration with large eddy simulations using tabulated chemistry},
author = {Sebastian Popp and Sandra Hartl and David Butz and Dirk Geyer and Andreas Dreizler and Luc Vervisch and Christian Hasse},
doi = {10.1016/j.proci.2020.06.098},
year = {2021},
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journal = {Proceedings of the Combustion Institute},
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Butz, David; Hartl, Sandra; Popp, Sebastian; Walther, Steffen; Barlow, Robert S.; Hasse, Christian; Dreizler, Andreas; Geyer, Dirk
Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics Journal Article
In: Combustion and Flame, vol. 210, pp. 426–438, 2019.
@article{Butz.2019b,
title = {Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics},
author = {David Butz and Sandra Hartl and Sebastian Popp and Steffen Walther and Robert S. Barlow and Christian Hasse and Andreas Dreizler and Dirk Geyer},
year = {2019},
date = {2019-01-01},
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Butz, David; Hartl, Sandra; Popp, Sebastian; Walther, Steffen; Barlow, Robert S.; Hasse, Christian; Dreizler, Andreas; Geyer, Dirk
Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics Journal Article
In: Combustion and Flame, vol. 210, pp. 426–438, 2019.
@article{Butz.2019,
title = {Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics},
author = {David Butz and Sandra Hartl and Sebastian Popp and Steffen Walther and Robert S. Barlow and Christian Hasse and Andreas Dreizler and Dirk Geyer},
url = {https://www.sciencedirect.com/science/article/pii/S0010218019303967},
doi = {10.1016/j.combustflame.2019.08.032},
year = {2019},
date = {2019-01-01},
journal = {Combustion and Flame},
volume = {210},
pages = {426–438},
abstract = {In practical applications, partial premixing of fuel and oxidizer, as well as recirculation of combustion products, result in complex combustion scenarios where multi-regime effects arise and a numerical representation of local reaction zones by purely premixed or purely non-premixed flame structures may not hold. Here, a novel burner system is introduced to investigate the fundamental characteristics of multi-regime combustion and to provide a basis for validating numerical models. This multi-regime burner (MRB) is specifically designed to produce flames with multi-regime characteristics while maintaining well-defined boundary conditions. Thermochemical data from Raman/Rayleigh/CO-LIF scattering experiments are provided for two selected operating conditions. The experimental investigation focuses on the overall flame structure by examining radial profiles of temperature and mixture fraction, as well as scatter plots of temperature, CH4, and CO versus mixture fraction. In order to assess the relative importance of different flame regimes, the gradient-free regime identification (GFRI) approach is extended to allow for an automated classification of local reaction zone structures. Classification criteria are defined, based on the ratio of local heat release rate peaks associated with premixed and non-premixed reaction zones located in close spatial proximity, and an automated process is implemented to classify 1D Raman/Rayleigh sample lines as premixed, dominantly premixed, multi-regime, dominantly non-premixed, or non-premixed flame zones. The importance of different flame zones, indicated by their population fractions, are found to evolve with downstream distance and show distinct differences between the two selected flames. Further, a prior analysis is used to test the applicability of 1D flame structure assumptions for the underlying combustion regime.},
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Hartl, S.; Winkle, R.; Geyer, D.; Dreizler, A.; Magnotti, G.; Hasse, C.; Barlow, R. S.
Assessing the relative importance of flame regimes in Raman/Rayleigh line measurements of turbulent lifted flames Journal Article
In: Proceedings of the Combustion Institute, vol. 37, no. 2, pp. 2297–2305, 2019.
@article{Hartl.2019,
title = {Assessing the relative importance of flame regimes in Raman/Rayleigh line measurements of turbulent lifted flames},
author = {S. Hartl and R. Winkle and D. Geyer and A. Dreizler and G. Magnotti and C. Hasse and R. S. Barlow},
doi = {10.1016/j.proci.2018.06.067},
year = {2019},
date = {2019-01-01},
journal = {Proceedings of the Combustion Institute},
volume = {37},
number = {2},
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Hartl, Sandra; Geyer, Dirk; Hasse, Christian; Zhao, Xinyu; Wang, Haiou; Barlow, Robert S.
Assessing an experimental approach for chemical explosive mode and heat release rate using DNS data Journal Article
In: Combustion and Flame, vol. 209, pp. 214–224, 2019.
@article{Hartl.2019b,
title = {Assessing an experimental approach for chemical explosive mode and heat release rate using DNS data},
author = {Sandra Hartl and Dirk Geyer and Christian Hasse and Xinyu Zhao and Haiou Wang and Robert S. Barlow},
doi = {10.1016/j.combustflame.2019.07.038},
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Schneider, Silvan; Geyer, Dirk; Magnotti, Gaetano; Dunn, Matthew J.; Barlow, Robert S.; Dreizler, Andreas
Structure of a stratified CH4 flame with H2 addition Journal Article
In: Proceedings of the Combustion Institute, vol. 37, no. 2, pp. 2307–2315, 2019.
@article{Schneider.2019,
title = {Structure of a stratified CH4 flame with H2 addition},
author = {Silvan Schneider and Dirk Geyer and Gaetano Magnotti and Matthew J. Dunn and Robert S. Barlow and Andreas Dreizler},
doi = {10.1016/j.proci.2018.06.205},
year = {2019},
date = {2019-01-01},
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volume = {37},
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Straub, C.; Kronenburg, A.; Stein, O. T.; Barlow, R. S.; Geyer, D.
Modeling stratified flames with and without shear using multiple mapping conditioning Journal Article
In: Proceedings of the Combustion Institute, vol. 37, no. 2, pp. 2317–2324, 2019.
@article{Straub.2019,
title = {Modeling stratified flames with and without shear using multiple mapping conditioning},
author = {C. Straub and A. Kronenburg and O. T. Stein and R. S. Barlow and D. Geyer},
doi = {10.1016/j.proci.2018.07.033},
year = {2019},
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Butz, David; Hartl, Sandra; Popp, Sebastian; Walther, Steffen; Barlow, Robert S.; Hasse, Christian; Dreizler, Andreas; Geyer, Dirk
Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics Journal Article
In: Combustion and Flame, vol. 210, pp. 426–438, 2019.
@article{Butz.2019d,
title = {Local flame structure analysis in turbulent CH4/air flames with multi-regime characteristics},
author = {David Butz and Sandra Hartl and Sebastian Popp and Steffen Walther and Robert S. Barlow and Christian Hasse and Andreas Dreizler and Dirk Geyer},
year = {2019},
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Straub, Carmen; Kronenburg, Andreas; Stein, Oliver T.; Kuenne, Guido; Janicka, Johannes; Barlow, Robert S.; Geyer, Dirk
Multiple mapping conditioning coupled with an artificially thickened flame model for turbulent premixed combustion Journal Article
In: Combustion and Flame, vol. 196, pp. 325–336, 2018.
@article{Straub.2018,
title = {Multiple mapping conditioning coupled with an artificially thickened flame model for turbulent premixed combustion},
author = {Carmen Straub and Andreas Kronenburg and Oliver T. Stein and Guido Kuenne and Johannes Janicka and Robert S. Barlow and Dirk Geyer},
doi = {10.1016/j.combustflame.2018.05.021},
year = {2018},
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Hartl, Sandra; Geyer, Dirk; Dreizler, Andreas; Magnotti, Gaetano; Barlow, Robert S.; Hasse, Christian
Regime identification from Raman/Rayleigh line measurements in partially premixed flames Journal Article
In: Combustion and Flame, vol. 189, pp. 126–141, 2018.
@article{Hartl.2018,
title = {Regime identification from Raman/Rayleigh line measurements in partially premixed flames},
author = {Sandra Hartl and Dirk Geyer and Andreas Dreizler and Gaetano Magnotti and Robert S. Barlow and Christian Hasse},
doi = {10.1016/j.combustflame.2017.10.024},
year = {2018},
date = {2018-01-01},
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Eitel, Felix; Pareja, Jhon; Johchi, Ayane; Böhm, Benjamin; Geyer, Dirk; Dreizler, Andreas
Temporal evolution of auto-ignition of ethylene and methane jets propagating into a turbulent hot air co-flow vitiated with NO x Journal Article
In: Combustion and Flame, vol. 177, pp. 193–206, 2017.
@article{Eitel.2017,
title = {Temporal evolution of auto-ignition of ethylene and methane jets propagating into a turbulent hot air co-flow vitiated with NO x},
author = {Felix Eitel and Jhon Pareja and Ayane Johchi and Benjamin Böhm and Dirk Geyer and Andreas Dreizler},
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year = {2017},
date = {2017-01-01},
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Stahler, Thabo; Geyer, Dirk; Magnotti, Gaetano; Trunk, Philipp; Dunn, Matthew J.; Barlow, Robert S.; Dreizler, Andreas
Multiple conditioned analysis of the turbulent stratified flame A Journal Article
In: Proceedings of the Combustion Institute, vol. 36, no. 2, pp. 1947–1955, 2017.
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Eitel, Felix; Pareja, Jhon; Geyer, Dirk; Johchi, Ayane; Michel, Florian; Elsäßer, Wolfgang; Dreizler, Andreas
A novel plasma heater for auto-ignition studies of turbulent non-premixed flows Journal Article
In: Experiments in Fluids, vol. 56, no. 10, 2015.
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title = {A novel plasma heater for auto-ignition studies of turbulent non-premixed flows},
author = {Felix Eitel and Jhon Pareja and Dirk Geyer and Ayane Johchi and Florian Michel and Wolfgang Elsäßer and Andreas Dreizler},
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Fiorina, B.; Mercier, R.; Kuenne, G.; Ketelheun, A.; Avdić, A.; Janicka, J.; Geyer, D.; Dreizler, A.; Alenius, E.; Duwig, C.; Trisjono, P.; Kleinheinz, K.; Kang, S.; Pitsch, H.; Proch, F.; Marincola, F. Cavallo; Kempf, A.
Challenging modeling strategies for LES of non-adiabatic turbulent stratified combustion Journal Article
In: Combustion and Flame, vol. 162, no. 11, pp. 4264–4282, 2015.
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title = {Challenging modeling strategies for LES of non-adiabatic turbulent stratified combustion},
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Magnotti, G.; Geyer, D.; Barlow, R. S.
Interference free spontaneous Raman spectroscopy for measurements in rich hydrocarbon flames Journal Article
In: Proceedings of the Combustion Institute, vol. 35, no. 3, pp. 3765–3772, 2015.
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title = {Interference free spontaneous Raman spectroscopy for measurements in rich hydrocarbon flames},
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