1. Blasco J. A., Fueyo, N., Dopazo, C., & Ballester, J. (1998). Modelling the temporal evolution of a reduced combustion chemical system with an artificial neural network. Combustion and Flame 113 (1/2), 38–52.
2. Chang, W.-C. (1996). Modeling of NOx formation in turbulent flames. Development of reduced mechanisms and mixing models. PhD thesis, Department of Mechanical Engineering, UC Berkeley.
3. Chen, J.-Y., Kollmann, W., & Dibble, R. W. (1989). PDF modelling of turbulent nonpremixed methane jet flames. Combustion Science and Technology 64, 315–346.
4. Christo, F. C., Masri, A. R. & Nebot, E. M. (1996). Artificial neural network implementation of chemistry with pdf simulation of H2/CO2 flames. Combustion and Flame 106, 406–427.
5. Frenklach, M., Wang, H., Goldenberg, M., Smith, G. P., Golden, D. M., Bowman, C. T., Hanson, R. K., Gardiner, W. C. & Lissianski, V. (1995). GRI-mech. an optimized detailed chemical reaction mechanism for methane combustion. Topical Report GRI-95/0058, Gas Research Institute