Ashofteh, P. S., Bozorg Haddad, O., Akbari-Alashti, H., & Marino, M.A. (2014). Determination of irrigation allocation policy under climate change by genetic programming. Journal of Irrigation and Drainage Engineering, 141(4), 1-12. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000912
Chongxun, M., Fanggui, L., Mei, Y., & Guikai, S. (2008). Risk analysis for earth dam overtopping. Journal of Water Science and Engineering, 1(2), 76–87. http://dx.doi.org/10.3882/j.issn.1674-2370.2008.02.008
Faghih, H., Kholghi, M., Kochekzadeh, S. (2009). Evaluating and Comparing Some of the Quantitative Risk Analysis Methods to Estimate Design Flood of Dam Spillway (Case Study: Pishin Dam Spillway). Journal of Crop Production and Processing, 12 (46), 463-474. http://dorl.net/dor/20.1001.1.22518517.1387.12.46.5.9
Ghashghaie, M., Marofi, S., Marofi, H. (2014). Using system dynamics method to determine the effect of water demand priorities on downstream flow. Water Resource Management, 28, 5055-5072. http://dx.doi.org/10.1007/s11269-014-0791-z
Goodarzi, E., Mirzaei, M., Ziaei, M. (2012). Evaluation of dam overtopping risk based on univariate and bivariate flood frequency analyses. Canadian Journal of Civil Engineering, 39(4), 374–387. https://doi.org/10.1139/l2012-012
Goodarzi, E., Shui, L. T., Ziaei, M. (2012). Dam overtopping risk using probabilistic concepts – case study: The Meijaran dam, Iran. Ain Shams Engineering Journal, 4(2), 185-197. http://dx.doi.org/10.1016/j.asej.2012.09.001
Goodarzi, E., Shui, L. T., Ziaei, M. (2014). Risk and Uncertainty Analysis for Dam Overtopping- Case Study: the Doroudzan Dam, Iran.
Journal of Hydro-Environment Research, 8(1), 50-61. http://dx.doi.org/10.1016%2Fj.jher.2013.02.001
Hughes, S. A. (2004). Estimation of Wave Run-up on Smooth, Impermeable Slopes Using the Wave Momentum Flux Parameter. Journal of
Coastal Engineering, 51(11), 1085-1104. http://dx.doi.org/10.1016/j.coastaleng.2004.07.026
Juan, C., Ping, A. Z., Ru, A., Feilin, Z., & Bin, X. (2019). Risk analysis for real-time flood control operation of multi-reservoir systems using a dynamic Bayesian network. Environmental Modeling & Software. 111, 409-420. http://dx.doi.org/10.1016/j.envsoft.2018.10.007
Kuo, J. T., Yen, B. C., Hsu, Y. C., & Lin, H. F. (2007). Risk analysis for dam overtopping Feitsui reservoir as a case study. Journal of Hydraulic Engineering, 133(8), 955-963. https://doi.org/10.1061/(ASCE)0733-9429(2007)133:8(955)
Kwon, H., Moon, Y. (2005). Improvement of Overtopping Risk Evaluations Using Probabilistic Concepts for Existing Dams. Journal of
Stochastic Environmental Research and Risk Assessment, 20(4), 223-237. http://dx.doi.org/10.1007/s00477-005-0017-2
Motevalli, M.,
Zadbar, A.,
Elyasi, E., &
Jalaal, M. (2015). Using Monte-Carlo approach for analysis of quantitative and qualitative operation of reservoirs system with regard to the inflow uncertainty. Journal of African Earth Sciences, 105, 1-16. http://dx.doi.org/10.1016/j.jafrearsci.2015.02.002
Simonovic, S. P. (2009). Managing water resources, methods and tools for a system approach. UNESCO Publishing, United Kingdom, 637pp.
USBR. (1992). US Department of the Interior, Bureau of Reclamation, Freeboard Criteria and Guidelines for Computing Freeboard Allowances for Storage Dams, ACER Technical Memorandum, No. 2, Denver, Colorado.
Wu, S. j., Yang, J. C., Tung, Y. K. (2011). Risk analysis for flood-control structure under consideration of uncertainties in design flood. Natural Hazards, 58, 117–140. http://dx.doi.org/10.1007/s11069-010-9653-z
Yang, C. C., Chang, L. C., Ho C. C. (2008). Application of system dynamics with impact analysis to solve the problem of water shortages in Taiwan. Water Resource Management, 22, 1561-1577. http://dx.doi.org/10.1007/s11269-008-9243-y
Yang, J., Lei, K., Khu, S., & Meng, W. (2015). Assessment of water resources carrying capacity for sustainable development based on a system dynamics model, Water Resource Management, 29, 885-899. http://dx.doi.org/10.1007/s11269-014-0849-y
Ebrahimzadeh, A., Zarghami, M., Nourani, V. (2019). Evaluation of earth dam overtopping risk by system dynamics, Monte-Carlo simulation and Latin Hypercube Sampling methods (case study: Hajilarchay Dam, Iran). Journal of IranWater Resources Research, 15(1), 14-31. (In Persian). https://dorl.net/dor/20.1001.1.17352347.1398.15.1.2.9
Ebrahimzadeh, A., Zarghami, M., Nourani, V. (2020). Overtopping Risk Management by System Dynamics and Monte-Carlo Simulations, Hajilarchay Dam of Iran. Journal of Water and Irrigation Management, 9(2), 231-250. (In Persian). https://doi.org/10.22059/jwim.2019.290802.719
Fotookian, M. R., Safari, N., Zarghami, M. (2017). Using System Dynamics Modelling to Develop the Operation Polcy for Yamchi Reservoir (Iran) by Applying Optimum Cropping Pattern. Journal of Iran Water Resources Research, 13(3), 1–16. (In Persian).
Ghias, M. (2014). An introduction to the Monte Carlo simulation methods. Journal of Polymerization, 4(1), 67-77. (In Persian). https://dx.doi.org/10.22063/basparesh.2014.1062
Ghods Niroo Consulting Engineers. (2005). Vanyar Storage Dam Project Report Volumes 1 to 9. East Azerbaijan Regional Water Management Company, Iran. (In Persian).
Khakbaz, B., Tajrishi, M., Abrishamchi, A. (2001). Risk and reliability analysis of dam overtopping due to wind. Proceedings of the
3rd Iranian Hydraulic Conference, 6-8 November 2001, Tehran University, Iran, 445-453. (In Persian).
Mahmoudian-Shoushtari, M., Malekmohammadi, B., Banihashemi, M. (2016). Dam Safety Risk Assessment (Case Study: Flood Risk for Golestan Dam). Amirkabir Journal of Civil and Environmental Engineering, 48(4), 395-405. (In Persian). https://doi.org/10.22060/ceej.2015.505
Mollahosseini, M., Mousavi, S. J., Salavitabar, A. (2012). Evaluation the effect of storage capacity creation to reduce flood damage using optimization-simulation system dynamics based model. Proceedings of the 9th International Congress on Civil Engineering, 8-10 May 2012, Isfahan University of Technology, Iran, 237-245. (In Persian).
Sharafati, A., Zahabiyoun, B. (2014). Dam overtopping risk analysis considering hydrologic and hydraulic uncertainties. Journal of Hydraulics, 8(1), 1-18. (In Persian). https://doi.org/10.30482/jhyd.2014.7472