1. Baumann-Stanzer, K., Andronopoulos, S., Armand, P., Berbekar, E., Efthimiou, G., Fuka, V., Gariazzo, C., Gasparac, G., Harms, F., Hellsten, A., Jurcakova, K., Petrov, A., Rakai, A., Stenzel, S., Tavares ,R., Tinarelli, G., & Trini Castelli, S. (2015). COST ES1006—Model Evaluation Case Studies, COST Action ES1006.
2. Chaloupecká, H., Jaňour, Z., Mikšovský, J., Jurčáková, K., & Kellnerová, R. (2017). Evaluation of a new method for puff arrival time as assessed through wind tunnel modeling. Process Safety and Environmental Protection, 111, 194–210.
3. Chaloupecká, H., Jaňour, Z., Jurčáková, K., & Kellnerová, R. (2018). Sensitivity of puff characteristics to maximum-concentration-based definition of departure time. Journal of Loss Prevention in the Process Industries, 56, 242–253.
4. Chaloupecká, H., Jakubcová, M., Jaňour, Z., Jurčáková, K., & Kellnerová, R. (2019). Equations of a new puff model for idealized urban canopy. Process Safety and Environmental Protection, 126, 382–392.
5. de Sá, J. P. M. (2017). Applied statistics using SPSS, Statistica, Matlab and R. Springer.