2016 / Journal article

On the controlling mechanism of the upper turnover states in the NTC regime

Weiqi Ji, Peng Zhao, Tanjin He, Xin He, Aamir Farooq, Chung K. Law

Combustion and Flame, 164, 294-302 · 2016

Abstract

Using n-butane, n-heptane and iso-octane as representative fuels exhibiting NTC (negative temperature coefficient) behavior, comprehensive computational studies with detailed mechanisms and theoretical analysis were performed to investigate the upper stationary point, denoted as turnover states, on the NTC curve near the higher temperature regime, where the ignition delay τ exhibits a local maximum. It is found that the global behavior of the turnover states exhibits distinctive thermodynamic and kinetic characteristics under different pressures, in that the ignition delay at the turnover states shows an Arrhenius dependence on the temperature T and an approximate inverse quadratic power law dependence on the pressure P. These global behaviors imply that the temperature and pressure of the turnover states are not independent and can be correlated by an Arrhenius dependence, as ln P ∝ 1/T. Further theoretical analyses demonstrate that such turnover states result from the competition between the low-temperature chain branching reactions and the decomposition of the intermediate species, and therefore correspond to a critical value, α, of the ratio of OH production from low-temperature chemistry. In addition, the ignition delay at the turnover state can be well correlated by the analytical expression derived by Peters et al., with the further demonstration that the pressure dependence of the turnover ignition delay mainly result from the H2O2 decomposition reaction. Comparison of the present results with the literature experimental data of n-heptane ignition delay time shows very good agreement.

Research summary

Studies the kinetic mechanisms controlling the upper turnover states in the negative-temperature-coefficient regime.

NTCautoignitionchemical kinetics

PDF: Repository manuscript · Source. The linked PDF is the reference for equations, figures and tables.

Cite this work

@article{ntcupperturnover2016,
  title = {{On the controlling mechanism of the upper turnover states in the NTC regime}},
  author = {Weiqi Ji and Peng Zhao and Tanjin He and Xin He and Aamir Farooq and Chung K. Law},
  year = {2016},
  journal = {Combustion and Flame},
  volume = {164},
  pages = {294-302},
  doi = {10.1016/j.combustflame.2015.11.028},
  url = {https://jiweiqi.github.io/papers/ntc-upper-turnover/}
}