[1] Falvay, H., "Hydraulic Design of Labyrinth Weirs", ASCE Press, Virginia, US, 2003.
[2] Taylor, G., "The Performance of Labyrinth Weirs", PhD Thesis, University of Nottingham, UK, 1968.
[3] Lux III, F. L., Hinchcliff, D., "Design and Costruction of Labyrinth Spillways", 15th International Congress on Large Dam, Paris, France, 1985, pp 249-274.
[4] Falvey, H. T., "Hydraulic Design of Labyrinth Weirs", ASCE Press, 2002.
[5] Tullis, J. P., Nosratollah, A., Waldron, D., "Design of Labyrinth Spillways", Journal of Hydraulic Engineering, 1995, 121 (3), 247-255.
[6] Magalhaes, A. P., "Labyrinth Weir Spillway", 15th Congress of Icold, Lausanne, Switzerland, 1985.
[7] Jang, J. S. R., "ANFIS: Adaptive Network Based Fuzzy Inference System", IEEE Transactions on Systems, Man and Cybernetics, 1993, 23 (3), 665-683.
[8] انوری، ص.، "ارتقاء مدلهای هوشمند جهت پیشبینی جریان رودخانه با استفاده از دادههای توزیع مکانی اقلیمی و سطح برف"، پایاننامه کارشناسی ارشد سازههای آبی، دانشگاه تربیت مدرس، تهران، 1387.
[9] Nayak, P., Sudheer, K., Rangan, D., Ramasa, K., "A Neuro-Fuzzy Computing Technique for Modeling Hydrological Time Series", Journal of Hydrology, 2004, 291, 52-66.
[10] Chang, F. J., Chang Y. T., "Adaptive Neuro-Fuzzy Inference System for Prediction of Water Level in Reservoir", Advances in Water Resources, 2006, 29, 1-10.
[11] Engelbrecht, A. P., "Computational Intelligence", 2nd Edition, John Wiley & Sons, US, 2007.
[12] Price, K., Storn, R. M., Lampinen, J. A., "Differential Evolution a Practical Approach to Global Optimization", Springer-Verlag Berlin Heidelberg, 2005.