Adnan S, Ullah K, Shuanglin L, Gao S, Khan AH, Mahmood R (2018) Comparison of various drought indices to monitor drought status in Pakistan. Clim Dyn 51(5–6):1885–1899
Article
Google Scholar
Aguirre A, Río MD, Condés S (2018) Intra- and inter-specific variation of the maximum size-density relationship along an aridity gradient in Iberian pinewoods. For Ecol Manag 411:90–100
Article
Google Scholar
Ahani H, Kherad M, Kousari MR, Roosmalen LV, Aryanfar R, Hoseine SM (2012) Non-parametric trend analysis of the aridity index for three large arid and semi-arid basins in Iran. Theor Appl Climatol 112:553–564
Article
Google Scholar
Ahmad MI, Sinclair CD, Werritty A (1988) Log-logistic flood frequency analysis. Journal of Hydrology 98(3–4):205–224
Allen RG, Pereira LS, Raes D, Smith M (1998) Crop evapotranspiration. Guidelines for computing crop water requirements, FAO irrigation and drainage paper 56. FAO, Roma
Bahadori A, Sepaskhah AR (2012) Evaluation of the effects of different water management on winter wheat crop in the Bajgah and downstream of the Dorodzan dam using AquaCrop and CropSyst models, MSc thesis, Shiraz University
Beguería S, Vicente-Serrano SM, Reig F, Latorre B (2014) Standardized precipitation evapotranspiration index (SPEI) revisited: parameter fitting, evapotranspiration models, tools, datasets and drought monitoring. Int J Climatol 34(10):3001–3023
Article
Google Scholar
Brouwer C, Heibloem M (1986) Irrigation water management: irrigation water needs. Training manual no. 3. FAO, Rome
De Martonne E (1926) Aérisme et indice d’aridité. C R Acad Sci 182:1395–1398
Google Scholar
Ebrahimpour M, Rahimi J, Nikkhah A, Bazrafshan J (2014) Monitoring agricultural drought using the standardized effective precipitation index. J Irrig Drain Eng 141(1):04014044
Garcia PM, Nicolas AL, Velazquez MP (2017) Combined use of relative drought indices to analyze climate change impact on meteorological and hydrological droughts in a Mediterranean basin. J Hydrol 554:292–305
Article
Google Scholar
Gidey E, Dikinya O, Sebego R, Segosebe E, Zenebe A (2018) Analysis of the long-term agricultural drought onset, cessation, duration, frequency, severity and spatial extent using Vegetation Health Index (VHI) in Raya and its environs, Northern Ethiopia. Environmental Systems Research 7(1):13. https://doi.org/10.1186/s40068-018-0115-z
Haro-Monteagudo D, Daccache D, Knox J (2017) Exploring the utility of drought indicators to assess climate risks to agricultural productivity in a humid climate. Hydrol Res 49(2):539–551. https://doi.org/10.2166/nh.2017.010
Article
Google Scholar
Hess T (2010) Estimating green water footprints in a temperate environment. Water 2(3):351–362
Article
Google Scholar
Jia Y, Zhang B, Ma B (2018) Daily SPEI reveals long-term change in drought characteristics in Southwest China. Chin Geogr Sci 28(4):680–693. https://doi.org/10.1007/s11769-018-0973-3
Article
Google Scholar
Kourgialas NN, Karatzas GP, Morianou G (2015) Water management plan for olive orchards in a semi-mountainous area of Crete, Greece. Glob Nest J 17(1):72–81
Article
Google Scholar
Liu X, Pan Y, Zhu X, Yang T, Bai J, Sun Z (2018) Drought evolution and its impact on the crop yield in the North China Plain. J Hydrol 564:985–996
Article
Google Scholar
Liyan T, Shanshui Y, Steven MQ (2018) Evaluation of six indices for monitoring agricultural drought in the south-central United States. Agric For Meteorol 249:107–119
Article
Google Scholar
Mahdavi M (2002) Applied hydrology, Tehran university press, 2, p.437
Mathieu JA, Aires F (2018) Assessment of the Agroclimatic indices to improve crop yield forecasting. Agric For Meteorol 253-254:15–30
Article
Google Scholar
McKee TB, Doesken NJ, Kleist J (1993) The relationship of drought frequency and duration to time scales. In: Proc. 8th Conf. on Applied Climatology, 17–22 January, American Meteorological Society, Mass, 179–184
Mousavizadeh SF, Honar T, Ahmadi SH (2016) Assessment of the AquaCrop model for simulating canola under different irrigation managements in a semiarid area. Int J Plant Prod 10(4):425–446
Peng Y, Jun X, Yongyong Z, Chesheng Z, Yunfeng Q (2018) Comprehensive assessment of drought risk in the arid region of Northwest China based on the global palmer drought severity index gridded data. Sci Total Environ 627:951–962. https://doi.org/10.1016/j.scitotenv.2018.01.234
Article
CAS
Google Scholar
Prabnakorn S, Maskey S, Suryadi FX, De Fraiture C (2018) Rice yield in response to climate trends and drought index in the Mun River Basin, Thailand. Sci Total Environ 621:108–119
Article
CAS
Google Scholar
Rezaei Banafsheh M, Rezaei A, Faridpour M (2015) Analyzing agricultural drought in east Azarbaijan province emphasizing remote sensing technique and vegetation condition index. Water and Soil Science (Agricultural Science) 25(1):113–123
Google Scholar
Sadras VO, Cassman KGG, Grassini P, Hall AJ, Bastiaanssen WGM, Laborte AG, Milne AE, Sileshi G, Steduto P (2015) Yield gap analysis of field crops—methods and case studies. FAO and DWFI - FAO Water Reports No. 41, Rome, Italy
Salemi H, Soom MAM, Lee TS, Mousavi SF, Ganji A, Yusoff MK (2011) Application of AquaCrop model in deficit irrigation management of winter wheat in arid region. Afr J Agric Res 6(10):2204–2215
Google Scholar
Shamsnia SA, Pirmoradian N (2013) Simulation of Rainfed wheat yield response to climatic fluctuations using model (case study: shiraz region in southern of Iran). Int J Eng Sci Invention 2(5):51–56
Shirshahi F, Babazadeh H, Ebrahimipak N, Zeraatkish Y (2018) Calibration and assessment of AquaCrop model for managing the quantity and time of applying wheat deficit irrigation. Irrigation Sciences and Engineering 4(1):31–44
Google Scholar
Sisi W, Xingguo M, Shi H, Suxia L, Zhengjia L (2018) Assessment of droughts and wheat yield loss on the North China Plain with an aggregate drought index (ADI) approach. Ecol Indic 87:107–116
Article
Google Scholar
Soh YW, Koo CH, Huang YF, Fung KF (2018) Application of artificial intelligence models for the prediction of standardized precipitation evapotranspiration index (SPEI) at Langat River Basin, Malaysia. Comput Electron Agric 144:164–173. https://doi.org/10.1016/j.compag.2017.12.002
Article
Google Scholar
Stamm GG (1967) Problems and procedures in determining water supply requirements for irrigation projects. In: Hagan et al (eds) Irrigation of agricultural lands. Agronomy Monograph 11. American Society of Agronomy, Madison, pp 771–784
Google Scholar
Tajbakhsh S, Eisakhani N, Fazl Kazemi A (2015) Assessment of meteorological drought in Iran using standardized precipitation and evapotranspiration index (SPEI). Journal of the Earth and Space Physics 41(2):313–321
Google Scholar
Tigkas D, Vangelis H, Tsakiris G (2016) Introducing a modified reconnaissance drought index (RDIe) incorporating effective precipitation. Procedia Engineering 162:332–339
Article
Google Scholar
Tigkas D, Vangelis H, Tsakiris G (2018) Drought characterization based on an agriculture-oriented standardized precipitation index. Theor Appl Climatol 135:1435–1447. https://doi.org/10.1007/s00704-018-2451-3
Article
Google Scholar
Tsakiris G, Pangalou D, Vangelis H (2007) Regional drought assessment based on reconnaissance drought index (RDI). Water Resour Manag 21(5):821–833
Article
Google Scholar
USDA SCS (1970) Irrigation water requirements. United States Department of Agriculture, soil conservation service, tech. Rel. No 21, (rev. 1970), 88p
Vicente-Serrano SM, Beguer’ıa S, Lopez-Moreno JI (2010) A multi-scalar drought index sensitive to global warming: the standardized precipitation evapotranspiration index – SPEI. J Clim 23:1696–1718
Article
Google Scholar
Vicente-Serrano SM, Begueria S, Lorenzo-Lacruz J, Julio CJ, Lopez-Moreno JI, Azorin-Molina C, Revuelto J, Morán-Tejeda E, Sanchez-Lorenzo A (2012) Performance of drought indices for ecological, agricultural, and hydrological applications. Earth Interact 16:1–27
Article
Google Scholar
Virgílio AB, Gouveia CM, DaCamara CC, Trigo IF (2018) A climatological assessment of drought impact on vegetation health index. Agric For Meteorol 259:286–295
Article
Google Scholar
Wable PS, Jha MK, Shekhar A (2018) Comparison of drought indices in a semi-Arid River Basin of India. Water Resour Manag 33:1–28. https://doi.org/10.1007/s11269-018-2089-z
Article
Google Scholar
Xu HJ, Wang XP, Zhao CY, Yang XM (2018) Diverse responses of vegetation growth to meteorological drought across climate zones and land biomes in northern China from 1981 to 2014. Agric For Meteorol 262:1–13
Article
Google Scholar
Zamaniyan MT, Behyar MB, Karimi HA, Vazifedoust M (2012) Agricultural drought monitoring and analysis using remotely sensed data from NOAA-AVHRR. Journal of Climate Research 3(9):102–103
Google Scholar
Zand-Parsa SH, Parvizi S, Sepaskhah AR, Mahbod M (2016) Evaluation of simulated soil water content, dry matter and grain yield of winter wheat (cv. Shiraz) using WSM and AquaCrop models. JWSS 20(77):59–70 (In Persian)
Article
Google Scholar
Zare Abyaneh H, Ghabaei SM, Mosaedi A (2015) Drought monitoring based on standardized precipitation evapotranspiration index (SPEI) under the effect of climate change. Journal of Water and Soil 29(2):384–392
Google Scholar
Zarei AR (2018) Evaluation of drought condition in arid and semi- arid regions, using RDI index. Water Resour Manag 32:1689–1711. https://doi.org/10.1007/s11269-017-1898-9
Article
Google Scholar
Zarei AR, Mahmoudi MR (2017) Evaluation of changes in RDIst index effected by different potential evapotranspiration calculation methods. Water Resour Manag 31(15):4981–4999
Article
Google Scholar
Zarei AR, Moghimi MM (2017) Environmental assessment of semi-humid and humid regions based on modelling and forecasting of changes in monthly temperature. Int J Environ Sci Technol. https://doi.org/10.1007/s13762-017-1600-z
Zarei AR, Zare S, Parsamehr AH (2015) Comparison of several methods to estimate reference evapotranspiration. West Afr J App Ecol 23:17–25
Google Scholar
Zarei AR, Shabani A, Mahmoudi MR (2019) Comparison of the climate indices based on the relationship between yield loss of rain-fed winter wheat and changes of climate indices using GEE model. Sci Total Environ 661:711–722
Article
CAS
Google Scholar
Zareiee AR (2014) Evaluation of changes in different climates of Iran, using De-Martonne index and Mann-Kendall trend test, natural hazards and earth system science. Discuss 2:2245–2261
Google Scholar
Zuo D, Cai S, Xu Z, Li F, Sun W, Yang X, Kan G, Liu P (2018) Spatiotemporal patterns of drought at various time scales in Shandong Province of Eastern China. Theor Appl Climatol 131(1–2):271–284. https://doi.org/10.1007/s00704-016-1969-5
Article
Google Scholar