International Journal of Engine Research, 1468-0874

Journal

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  1. 2019
  2. 2016
  3. A review of design considerations for light-duty diesel combustion systems

    Miles, P. C. & Öivind Andersson, 2016, In : International Journal of Engine Research. 17, 1, p. 6-15

    Research output: Contribution to journalArticle

  4. 2014
  5. Editorial: Special Issue on emission modeling

    Per Tunestål, Alberer, D. & Gervais, M., 2014, In : International Journal of Engine Research. 15, 8, p. 897-897

    Research output: Contribution to journalDebate/Note/Editorial

  6. Zero-dimensional modeling of NOx formation with least squares interpolation

    Muric, K., Stenlaas, O. & Per Tunestål, 2014, In : International Journal of Engine Research. 15, 8, p. 944-953

    Research output: Contribution to journalArticle

  7. 2011
  8. Gasoline partially premixed combustion, the future of internal combustion engines?

    Manente, V., Johansson, B. & Cannella, W., 2011, In : International Journal of Engine Research. 12, 3, p. 194-208

    Research output: Contribution to journalArticle

  9. Surrogate fuels for premixed combustion in compression ignition engines

    Kalghatgi, G. T., Hildingsson, L., Harrison, A. J. & Johansson, B., 2011, In : International Journal of Engine Research. 12, 5, p. 452-465

    Research output: Contribution to journalArticle

  10. 2007
  11. Dual injection homogeneous charge compression ignition engine simulation using a stochastic reactor model

    Mosbach, S., Su, H., Kraft, M., Bhave, A., Mauss, F., Wang, Z. & Wang, J-X., 2007, In : International Journal of Engine Research. 8, 1, p. 41-50

    Research output: Contribution to journalArticle

  12. 2004
  13. Analysis of a natural gas fuelled homogeneous charge compression ignition engine with exhaust gas recirculation using a stochastic reactor model

    Behave, A., Balthasar, M., Kraft, M. & Mauss, F., 2004, In : International Journal of Engine Research. 5, p. 93-104

    Research output: Contribution to journalArticle

  14. 2002