- Akbari, M., M.R. Jarge and H. Madani Sadat. 2009. Assessment of decreasing of groundwater-table using Geographic Information System (GIS), case study: Mashhad Plain Aquifer. Journal of Water and Soil Conservation, 16(4): 63-78 (in Persian).
- Amirataee, B. and K. Zeinalzadeh. 2016. Trends analysis of quantitative and qualitative changes in groundwater with considering the autocorrelation coefficients in west of Lake Urmia, Iran. Journal of Environmental Earth Sciences, 75: 1-10.
- Azizi, G. 2003. The relationship between recent droughts and groundwater resources in Gazvin Plain. Journal of Geography Research, 46: 131-143 (in Persian).
- Delshad, S. Investigation on variations of cropping areas and groundwater withdrawal in Urmia Lake Basin. MSc Thesis, Faculty of Agriculture, Urmia University, 99 pages.
- Fathian, F., S. Morid and E. Kahya. 2015. Identification of trends in hydrological and climatic variables in Urmia Lake Basin, Iran. Theoretical and Applied Climatology, 119(3-4): 443-464.
- Gao, Z., J. He, K. Dong and X. Li. 2017. Trends in reference evapotranspiration and their causative factors in the west Liao River Basin, China. Journal of Agricultural and Forest Meteorology, 232: 106-117.
- Hessari, B. and N. Tayfeh. Investigation of Urmia Lake water level fluctuation and its similarity to Caspian Sea and Turkry-Van Lake water level fluctuations and the region climatological observations. 2nd National Conference on Environmental Crisis of Urmia Lake, Naghadeh, 62-68.
- Mahab Ghods Consulting Engineers. 2013. The Comprehensive water management in the Aras, Sefidrood, between Sefidrood and Haraz, Atrac and Urmia. Agricultural Water Use Study in Urmia Lake Basin, Report No. 2385070-4420-19464, Iran Ministry of Energy, Deputy of Water and Wastewater, Macro Planning Bureau.
- Kendall, M.G. 1975. Rank correlation methods. Charles Griffin, London, 15 pages.
- Mann, H.B. 1945. Non-parametric test against trend. Econometrica, 13: 245–259.
- Nazeri Tahroudi, M., F. Ahmadi and K. Khalili. 2018. Evaluation of 30 years changing of river flow discharges in Urmia Lake Basin. Journal of Irrigation and Drainage, 12(2): 424-433 (in Persian).
- Salehi Bavil, S., K. Zeinalzadeh and B. Hessari. 2017. The changes in the frequency of daily precipitation in Urmia Lake Basin, Iran. Journal of Theoretical and Applied Climatology, 133: 205-214.
- Shadmani, M., S. Marofi and M. Roknian. 2012. Trend analysis in reference evapotranspiration using Mann-Kendall and Spearman’s Rho tests in arid regions of Iran. Journal of Water Resources Management, 26: 211-224.
- Thomas, T., R.K. Jaiswal, R. Galkate and S. Singh. 2009. Development of a rainfall-recharge relationship for a fractured basaltic aquifer in Central India. Water Resources Management, 23: 3101-3119.
- Xiong, L. and S. Guo. 2004. Trend test and change-point detection for the annual discharge series of the Yangtze River at the Yichang Hydrological Station. Journal of Hydrological Sciences, 49: 99-112.
- Xu, C.Y. and V.P. Singh. 2004. Review on regional water resources assessment models under stationary and changing climate. Journal of Water Resource Management, 18: 591-612.
- Yue, S., P. Pilon, B. Phinney and G. Cavadias. 2002. The influence of autocorrelationon the ability to detect trend in hydrological series. Journal of Hydrological Processes, 16: 1807-1829.
- Youneszadeh Jalili, S., M. Kamali and P. Daneshkar Araste. 2017. Analytical study of land use changes (irrigated agriculture) in the watershed of Lake Urmia using Landsat Imagery. Isfahan University of Technology, 20(78): 15-28.
- Zhang, X., K.D. Harvey, W.D. Hogg and R. Yuzyk. 2001. Trends in Canadian streamflow. Journal of Water Resources Research, 37: 987-998.
|