Abolfathi, K., Alikhah-Asl, M., Rezvani, M., 2015. Range classification and evaluation using Geographic Information System (GIS) and Normalized Difference Vegetatiosn Index (NDVI), case study: Hablehrood Subwatershed of Shahrabad Basin. Hum. Environ. 13, 45-55 (in Persian).
Alavi, E.S., Dinpashoh, Y., Asadi, E., 2019. Analysis of hourly storms for the purpose of extracting design hyetographs using the Huff method. Geogr. Environ. Plann. 30, 41-58 (in Persian).
Alavinia, M., Nasiri Saleh, F., Asadi, H., 2019. Effects of rainfall patterns on runoff and rainfall-induced erosion. Int. J. Sediment Res. 34, 270-278.
Askari, A., Fathian, H., Nikbakht Shahbazi, A., Hasonizade, H., Zohrabi, N., 2022. Separating the impacts of climate change and human activities on runoff reduction in Karkheh Basin by hydrologic sensitivity analysis method. IWRR, 16(2), 103-117 (in Persian).
Chen, Z., Chen, Y., Li, B., 2013. Quantifying the effects of climate variability and human activities on runoff for Kaidu River Basin in arid region of northwest China. JAMC. 111(3), 537-545.
Ghasemi, H., Mahjourimajd, N., 2021. Quantifying the impact of climate change and human activities on runoff reduction with sensitivity analysis on time series breakpoints. JWREM. 16(4), 284-295 (in Persian).
Gilbert, R,O., 1987. statistical methods for environmental pollution monitoring. Wiley, NY.
Han, Z., Long, D., Fang, Y., Hou, A., Hong, Y., 2019. Impacts of climate change and human activities on the flow regime of the dammed Lancang River in Southwest China. Hydrogeol. J. 570, 96-105.
Hsun, Lee, C., Fu, Yeh, H., 2019. Impact of climate change and human activities on streamflow variations based on the bodyko framework. JARWW. 11, 1-22.
Hu, J., Ma, J., Nie, C., Xue, L., Zhang, Y., Ni, F., Deng, Y., Liu, J., Zhou, D., Li, L., 2020. Attribution analysis of runoff change in Min-tuo River Basin based on SWAt model simulations, china. Sci. Rep. 10, 1-16.
Kendall, M.G., 1975. Rank correlation methods. 4th edition, Charles Griffin, London.
Li, H., Zhang, Y., Vaze, J., Wang, B., 2012. Separating effects of vegetation change and climate variability using hydrological modelling and sensitivity-based approaches. J. Hydrol. Eng. 420, 403-418.
Mann, H.B., 1945. Non-parametric tests against trend, Econometrica 13, 163-171.
Naderi, M., Sheikh, V., Bahrehmand, A., Komaki, C.B., Ghangermeh, A., 2022. Analysis of river flow regime changes using the indicators of hydrologic alteration, case study: Hableroud Watershed. WSMM. 3(3), 1-19 (in Persian).
Pettitt, A.N., 1979. A non-parametric approach to the change-point problem. J. R. Stat. Soc. 28(2), 126-135.
Searcy, J.K., Hardison, C.H., 1960. Double-mass curves. US. Geology Survey Water Supply Pap. 1541-B, 27-66.
Shahid, M., Cong, Z., Zhang, D., 2018. Understanding the impacts of climate change and human activities on streamflow: A case study of the Soan River basin, Pakistan. Theor. Appl. Climatol. 134, 205-219.
Sharifi, A., Mirabbasi, R., Nasr-Esfahani, M.A., Haghighi, A.T., Nafchi, R.F., 2021. Quantifying the impacts of anthropogenic changes and climate variability on runoffذchanges in central plateau of Iran using nine methods. J. Hydrol. 603, 127045, 34 (in Persian).
Sheikh, V., Naderi, M., Bahrehmand, A., Sadoddin, A., Abedi Tourani, M., Komaki, C.B., Ghaemi, A., 2022. Quantifying the contributions of climate change and direct human interventions to streamflow alteration in the Hableroud River using empirical approaches. WSMM. 3(4), 241-259 (in Persian).
Wang, J., Hu, L., Li, D., Ren, M., 2020. Potential impacts of projected climate change under CMIP5 RCP scenarios on streamflow in the Wabash River Basin. Advances in Meteorology, 9698423
Xu, M., Wang, G., Wang, Z., Hu, H., Singh, D.K., Tian, S., 2022. Temporal and spatial hydrological variations of the Yellow River in the past 60 years. J. Hydrol, 609, 127750.
Zhang, L., Dawes, W.R., Walker, G.R., 2001. Response of mean annual evapotranspiration to vegetation changes at catchment scale. IWRR. 37(3), 701-708.