Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Changyoul Lee is active.

Publication


Featured researches published by Changyoul Lee.


Zeitschrift für Physikalische Chemie | 2012

On the Chemical Kinetics of Ethanol Oxidation: Shock Tube, Rapid Compression Machine and Detailed Modeling Study

Changyoul Lee; Stijn Vranckx; Karl Alexander Heufer; Sergey V. Khomik; Yasar Uygun; Herbert Olivier; Ravi X. Fernandez

Abstract Auto-ignition characteristics of ethanol were experimentally investigated using two Shock Tube (ST) facilities and a Rapid Compression Machine (RCM). Ignition delay times for stoichiometric ethanol-air mixtures were measured for temperatures between 775–1300 K in a High Pressure Shock Tube (HPST) at pressures close to 80 bar by probing pressure time histories and CH* emission. In some experiments the HPST was additionally employed for schlieren imaging to visualize ignition behavior by probing density gradients during ignition for ethanol-air mixtures. The ignition delay experiments in HPST were complemented by RCM measurements for extending the temperature regime to the Low Temperature Combustion (LTC) regime, down to 705 K, providing kinetic model validation data over a very wide temperature and pressure range. The current results also extend the earlier shock tube measurements performed in the same laboratory for pressures around 40 bar for temperatures down to 800 K [Heufer et al., Shock Waves 20 (2010) 307]. Furthermore, a Rectangular Shock Tube (RST) was solely used for additional schlieren imaging experiments to acquire information on ignition modes in stoichiometric ethanol-air mixtures around 10 bar. An improved chemical kinetic model was developed based on the Li et al. mechanism [Li et al., “Ethanol Model v1.0”, Princeton University, 2009] which was updated with evaluated rate parameters from the literature and validated through results obtained from the aforementioned facilities. The model predictions were compared to previously published low-pressure, premixed flat flame molecular beam mass spectrometry speciation data [Kasper et al., Combust. Flame 150 (2007) 220; Wang et al., J. Phys. Chem. A 112 (2008) 9255] where reasonable agreement is obtained considering the uncertainties in experiments and model. However, the model provides excellent agreement for the auto-ignition results obtained in the RCM and the high temperature shock induced ignition delays. Significant disparities with the model predictions are obtained for the shock tube results at temperatures below 1000 K as it transitions from the intermediate to the low temperature regime. The reasons for these deviations are assigned to strong fuel specific “pre-ignition” effects observed in ethanol auto-ignition, in contrast to other investigated fuels, which was satisfactorily explained through schlieren experimental results. To our knowledge this work is first of its kind that combines results from complementary experimental methods from three different facilities providing a holistic description on the auto-ignition behavior of ethanol. Furthermore, this paper reports ignition delay measurements for ethanol in air, at the highest pressures applicable to practical combustors.


Combustion and Flame | 2013

A comprehensive experimental and detailed chemical kinetic modelling study of 2,5-dimethylfuran pyrolysis and oxidation

Kieran P. Somers; John M. Simmie; Fiona Gillespie; Christine Conroy; Gráinne Black; Wayne K. Metcalfe; Frédérique Battin-Leclerc; Patricia Dirrenberger; Olivier Herbinet; Pierre-Alexandre Glaude; Philippe Dagaut; Casimir Togbé; Kenji Yasunaga; Ravi X. Fernandes; Changyoul Lee; Rupali Tripathi; Henry J. Curran


Combustion and Flame | 2014

A coordinated investigation of the combustion chemistry of diisopropyl ketone, a prototype for biofuels produced by endophytic fungi

Joshua W. Allen; Adam M. Scheer; Connie W. Gao; Shamel S. Merchant; Subith Vasu; Oliver Welz; John D. Savee; David L. Osborn; Changyoul Lee; Stijn Vranckx; Zhandong Wang; Fei Qi; Ravi X. Fernandes; William H. Green; Masood Z. Hadi; Craig A. Taatjes


Proceedings of the Combustion Institute | 2013

A rapid compression machine study of the low temperature combustion of cyclohexane at elevated pressures

Stijn Vranckx; Changyoul Lee; Harish Kumar Chakravarty; Ravi X. Fernandes


Combustion and Flame | 2016

Ignition studies of n-heptane/iso-octane/toluene blends

Tamour Javed; Changyoul Lee; Mohammed AlAbbad; Khalil Djebbi; Mohamed Beshir; Jihad Badra; Henry J. Curran; Aamir Farooq


SAE 2012 World Congress & Exhibition | 2012

Analysis of the Effects of Certain Alcohol and Furan-Based Biofuels on Controlled Auto Ignition

Adrien Brassat; Matthias Thewes; Martin Müther; Stefan Pischinger; Changyoul Lee; Ravi X. Fernandes; Herbert Olivier; Yasar Uygun


Combustion and Flame | 2013

An experimental and kinetic modelling study of n-butyl formate combustion

Stijn Vranckx; Joachim Beeckmann; Wassja A. Kopp; Changyoul Lee; Liming Cai; Harish Kumar Chakravarty; Herbert Olivier; Kai Leonhard; Heinz Pitsch; Ravi X. Fernandes


Proceedings of the Combustion Institute | 2017

Ignition characteristics of 2-methyltetrahydrofuran: An experimental and kinetic study

Rupali Tripathi; Changyoul Lee; Ravi X. Fernandes; Herbert Olivier; Henry J. Curran; S. Mani Sarathy; Heinz Pitsch


Combustion and Flame | 2016

Ignition characteristics of saturated and unsaturated furans

Alena Sudholt; Changyoul Lee; Jürgen Klankermayer; Ravi X. Fernandes; Heinz Pitsch


Combustion and Flame | 2017

Autoignition characteristics of oxygenated gasolines

Changyoul Lee; Ahfaz Ahmed; Ehson F. Nasir; Jihad Badra; Gautam Kalghatgi; S. Mani Sarathy; Henry J. Curran; Aamir Farooq

Collaboration


Dive into the Changyoul Lee's collaboration.

Top Co-Authors

Avatar

Ravi X. Fernandes

German National Metrology Institute

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Henry J. Curran

National University of Ireland

View shared research outputs
Top Co-Authors

Avatar

Liming Cai

RWTH Aachen University

View shared research outputs
Top Co-Authors

Avatar

Yasar Uygun

RWTH Aachen University

View shared research outputs
Top Co-Authors

Avatar

S. Mani Sarathy

King Abdullah University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge