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Total result(s) found: 11
  • An experimental and modeling study of the autoignition of 3-methylheptane
    W. Wang, Z. Li, M. Oehlschlaeger, D.Healy, H. Curran, M. Sarathy, M. Mehl, W. Pitz, C. Westbrook
    Proceedings of the Combustion Institute,  34 (1),  335–343 (2013)
3-Methylheptane; Shock tube; Rapid compression machine; Chemical kinetic modeling
  • Jet-stirred reactor and flame studies of propanal oxidation
    P. Veloo, P. Dagaut, C. Togbe, G. Dayma, M. Sarathy, C. Westbrook, F.Egolfopoulos
    Proceedings of the Combustion Institute,  34 (1),  599–606 (2013)
Kinetics; Jet-stirred reactor; Flame propagation; Modeling; Propanal
  • Ignition of non-premixed counterflow flames of octane and decane isomers
    N. Liu, M. Sarathy, C. Westbrook, F. Egolfopoulos
    Proceedings of the Combustion Institute,  34 (1),  903–910 (2013)
Flame ignition; Octane isomers; Decane isomers; Non-premixed flames; Kinetic modeling
  • A counterflow diffusion flame study of branched octane isomers​
     M. Sarathy, U. Niemann, C. Yeung, R. Gehmlich, C. Westbrook, M. Plomer, Z. Luod, M. Mehl, W.Pitz, K. Seshadri
    Proceedings of the Combustion Institute, 34 (1),  1015–1023 (2013)
3-Methylheptane; 2,5-Dimethylhexane; Counterflow diffusion flame; Ignition; Extinction
  • Fuel spray combustion of waste cooking oil and palm oil biodiesel: direct photography and detailed chemical kinetics
    O. Kuti. K. Nishida. M. Sarathy, J. Zhu
    SAE/KSAE 2013 International Powertrains, Fuels & Lubricants Meeting
Biodiesel, Diesel / Compression Ignition engines, Combustion and combustion processes
  • On the high-temperature combustion of n-butanol: New shock tube experiments and an improved kinetic model

    S.S. Vasu, S.M. Sarathy
    Energy and Fuels, 27, pp. 7072-7080, (2013)

N-butanol , Kinetic model
  • Experimental and modeling study of the oxidation of n- and iso-butanal

    P.S. Veloo, P. Dagaut, C. Togbé, G. Dayma, S.M. Sarathy, C.K. Westbrook, F.N. Egolfopoulos
    Combust. Flame, 160, 1609-1626, (2013)

Jet stirred reactor, Flame propagation, n-Butanal, iso-Butanal, Kinetics
  • Autoignition characterization of primary reference fuels and n-heptane/n-butanol mixtures in a constant volume combustion device and homogeneous charge compression ignition engine
    M.E. Baumgardner, S.M. Sarathy, A.J. Marchese

    Energy and Fuels, 27, pp. 7778-7789, (2013)

primary reference fuels (PRF), N-heptane/n-butanol ,Fuel Ignition Tester (FIT),Homogeneous Charge Compression Engine (HCCI)
  • Atmospheric pressure chemical ionization fourier transform ion cyclotron resonance mass spectrometry for complex thiophenic mixture analysis

    N. Hourani, J.T. Andersson, I. Möller, M. Amad, M. Witt, S.M. Sarathy
    Rapid Communications in Mass Spectrometry, 27, pp. 2432-2438, (2013)

Polycyclic aromatic sulfur heterocycles (PASHs) , Atmospheric pressure chemical ionization (APCI)
  • A computational study of the combustion and atmospheric decomposition of 2-methylfuran

    A.C. Davis, S.M. Sarathy
    Journal of Physical Chemistry A, 117, 7670-7685, (2013)

2-methylfuran (2MF), CBS-QB3,Alkylfurans
  • A comprehensive experimental and modeling study of iso-pentanol combustion

    S.M. Sarathy, S. Park, W. Wang, P.S. Veloo, A.C. Davis, C. Togbe, B. Weber, C.K. Westbrook, O. Park, G. Dayma, Z. Luo, M.A. Oehlschlaeger, F.N. Egolfopoulos, T. Lu, W.J. Pitz, C.-J. Sung, P. Dagaut
    Combust. Flame, 160, pp. 2712-2728, (2013)

Combustion chemistry, Chemical kinetic modeling, Shock tube, Rapid compression machine, Jet stirred reactor, Mechanism reduction