1- بایبوردی، محمد؛ 1380، اصول مهندسی آبیاری، روابط آب و خاک، جلد اول، انتشارات دانشگاه تهران 709 ص.
2- بداق جمالی،احمدیان، جوانمرد، گلمکانی؛ جواد، جواد، سهیلا، تکتم؛ 1381، ضرورت پایش وضعیت رطوبت خاک در افزایش بهره وری آب کشاورزی، یازدهمین همایش کمیته ملی آبیاری و زهکشی ایران، 390-376.
3- تقوی، محمدی؛ فرحناز، حسین؛ 1386،بررسی دورة بازگشت رویدادهای اقلیمی حدی به منظور شناخت پیامدهای زیست محیطی، محیط شناسی، دورة 33،ش43: 20-11.
4- فرخ نیا، مرید؛ اشکان, سعید؛ 1393، بررسی قابلیت داده های ماهواره بازیابی گرانش و آزمایش اقلیمی و خروجی مدل های سیستم جهانی تلفیق اطلاعات زمینی برای برآورد بیلان آب در مقیاس های مکانی بزرگ (مطالعه موردی حوضه آبریز دریاچه ارومیه)، تحقیقات منابع آب ایران، دورة 10،ش1: 62-51.
5- کردوانی، پرویز؛1380، خشکسالی و را ه های مقابله با آن در ایران موسسه انتشارات دانشگاه تهران، 33-28.
6- Balint, Z., Mutua, F.M. &Muchiri, P. (2011). “Drought Monitoring with the Combined Drought Index”.Journal of Methodology and Software. FAO-SWALIM Nairobi, Kenya:1-28.
7- Blume, T., Zehe, E. &Bronstert, A. (2009). Use of soil moisture dynamics and patterns at different spatio-temporal scales for investigation of subsurface flow processes, Hydro. Earth Syst. Sci., 13: 1215–1234.
8- Chen, J. &Yiping, W. (2008). Exploring hydrological process features of the East River (Dongjiang) basin in South China using VIC and SWAT. Hydrological Sciences for Managing Water Resources in the Asian Developing World, IAHSPubl, 319.
9- Fang, H., Beaudoing, H.K., Rodell, M., Teng, W.L. & Vollmer, B.E. (2009). Global Land Data Assimilation System(GLDAS) Products, Services and Application from NASA Hydrology Data and Information Services Center(HDISC), ASPRS 2009 Annual ConferenceBaltimore, Maryland March 8-13
10- Habte- Haile, K. (2011). Estimation of terrestrial water storage in the upper reach of yellow river, Un published M.Sc. Thesis, University of Twente, Enschede, Netherlands.
11- Hardy, J. (2003). “Climate Change, Causes, Effects and Solutions” John Wiley Sons, Ltd, pp. 39.
12- Kousari, M.R., Dastorani, M.T., Niazi, Y., Soheili, E., Hayatzadeh, M. &Chezgi, J. (2014). Trend Detection of Drought in Arid and Semi-Arid Regions of Iran Based on Implementation of Reconnaissance Drought Index (RDI) and Application of Non-Parametrical Statistical Method. Water resources management 28 (7), 1857-1872.
13- McKee, T.B., Doesken, N.J. & Kleist, J. (1993). The relationship of drought frequency and duration to time scales, In: Proceedings of the 8th conference on applied climatology, 17–22 January, Anaheim, CA, Am Meteor Soc, Boston, MA, 179–184.
14- McKee, T.B., Doesken, N.J. & Kleist, J.Y. (1995). Drought monitoring with multiple time scales, Ninth Conference on Applied Climatology, American Meteorological Society: Dallas, TX, PP 233–236.
15- Robinson, D.A., Campbell, C.S. Hopmans, J.W., Hornbuckle, B.K., Jones, S.B., Knight, R., Ogden, F., Selker, J. &Wendroth, O. (2008). Soil moisture measurement for ecological and hydrological watershed-scale observation, A review, Vadose Zone J., 7: 358–389.
16- Rosenbaum, U., Bogena, H. R., Herbst, M., Huisman, J. A., Peterson, T. J., Weuthen, A. &Vereecken, H. (2012). Seasonal and event dynamics of spatial soil moisture patterns at the small catchment scale, Water Resources Research, 48, W10544, doi:10.1029/2011WR011518.
17- Safavi, H.R., Esfahani, M.K. &Zamani, A.R. (2014). Integrated Index for Assessment of Vulnerability to Drought, Case Study: Zayandehrood River Basin, Iran.Water resources management 28 (6), 1671-1688.
18- Sheffield, J., Lobell, D.B. &Wood E. F. (2010). Global Drought Monitoring and Forecasting, based on Satellite Data and Land Surface Modeling, American Geophysical Union, Fall Meeting, abstract #H23B-1189.
19- Surendran, U., Kumar, V., Ramasubramoniam, S. & Raja, P. (2017). Development of Drought Indices for Semi-Arid Region Using Drought Indices Calculator (DrinC) – A Case Study from Madurai District, a Semi-Arid Region in India. Water Resources Management 31 (11), 3593-3605.
20- Tsakiris, G., Pangalou, D. & Vangelis, H. (2007). Regional drought assessment based on the Reconnaissance Drought Index (RDI). Water resources management 21 (5), 821-833.
21- Walker, J. P. & Houser, P.R. (2004). Requirements of a global near-surface soil moisture mission: accuracy, repeat time, and spatial resolution. Advances in Water Resources, 27, 785- 801.
22- Wigneron, J. P., Schmugge, T., Chanzy, A., Calvet, J. C. & KERR, Y. (1998). Use of passive microwave remote sensing to monitor soil moisture a review, Agronomie: Agriculture and Environment 18:27-43.
23- Zaitchik, B.F., Rodell, M. &Olivera, F. (2010). Evaluation of the global land data assimilation system using global river discharge data and a source-to-sink routing scheme, Water Resour, 46, W06507.
24- Zhao, S.,Yang, Y., Qiu, G., Qin, Q., Yao, Y., Xiong, Y. & Li. C. (2010). Remote detection of bare soil moisture using a surface-temperature-based soil evaporation transfer coefficient, International Journal of Applied Earth Observation and Geoinformation, Volume 12, Issue 5: 351–358.
25- Zhe, Y., Tingwu, L., Qinghong, Y., Zhanpneg, C. &Yuequn, D. (2013). A near-infrared reflectance sensor for soil surface moisture measurement, Computers and Electronics in Agriculture, vol, 99: 101-107.
26- Zuliqar, A., Ijaz, H., Muhammad, F., Hafiza, M. N., Mitwali, A. M., Tajammal, H. &Sadaf, S. (2017). A Novel Multi-Scalar Drought Index for Monitoring Drought: the Standardized Precipitation Temperature Index. Water Resources Management 31 (15), 4957-4969.