Abera, W., Formetta, G., Brocca, L., & Rigon, R. (2017). Modeling the water budget of the Upper Blue Nile basin using the JGrass-NewAge model system and satellite data. Hydrol. Earth Syst. Sci., 21(6), 3145-3165. DOI: 10.5194/hess-21-3145-2017
Ashouri, H., K. Hsu, S., Sorooshian, D. K., Braithwaite, K. R., Knapp, L. D., Cecil, B., Nelson, R., & Prat, O. P. (2015). PERSIANN-CDR: Daily Precipitation Climate Data Record from Multisatellite Observations for Hydrological and Climate Studies. Bull. Amer. Meteor. Soc., 96, 69–83. DOI: 10.1175/BAMS-D-13-00068.1
Anonymous, (2020). Studies on Providing Balance Sheet for Water Resources of Great Basin Area, Volume VI, Iran Ministry of Energy
Azizian, A. and Ramezani, H. (2019). Assessing the accuracy of european center for medium range weather forecasts (ECMWF) reanalysis datasets for estimation of daily and monthly precipitation. Iran. J. Soil Water Res., 50(4), 777-791. [In Persian] DOI: 10.22059/IJSWR.2018.261613.667962
Brocca, L., Ciabatta, L., Massari, C., Moramarco, T., Hahn, S., Hasenauer, S., Kidd, R Dorigo, W., Wagner, W., & Levizzani, V. (2014). Soil as a natural rain gauge: estimating global rainfall from satellite soil moisture data. J. Geophys. Res. Atmos. 119, 5128–5141. DOI: 10.1002/2014JD021489
Brocca, L., Massari, C., Ciabatta, L., Moramarco, T., Penna, D., Zuecco, G., Pianezzola, L., Borga, M., Matgen, P., & Martínez-Fernández, J.(2015). Precipitation estimation from in situ soil moisture observations at several sites in Europe: an evaluation of the SM2RAIN algorithm. J. Hydrol. Hydromech., (3), 201–209. DOI: 10.1515/johh-2015-0016
Brocca, L., Filippucci, P., Hahn, S., Ciabatta, L., Massari, C., Camici, S., & Wagner, W. (2019). SM2RAIN–ASCAT (2007–2018): Global daily satellite rainfall data from ASCAT soil moisture observations. Earth Syst. Sci. Data, 11(4), 1583-1601. DOI: 10.5194/essd-11-1583-2019
Ciabatta, L., Massari, C., Brocca, L., Gruber, A., Reimer, C., Hahn, S., Paulik, C., Dorigo, W., Kidd, R., & Wagner, W.(2018). SM2RAIN-CCI: a new global long-term rainfall data set derived from ESA CCI soil moisture. Earth Syst. Sci. Data, 10(1), 267-280 DOI: 10.5194/essd-10-267-2018
Fereydooni, M. (2015). Using soil moisture as a natural rain gauge to estimate the amount of rainfall using the SM2RAIN algorithm: a case study of Lake Urmia. Master's thesis. Sharif University of Technology. [ In Persian]
Forootan, E., Khaki, M., Schumacher, M., Wulfmeyer, V., Mehrnegar, N., van Dijk, A. I. J. M., Brocca, L., Farzaneh, S., Akinluyi, F., Ramillien, G., Shum, C. K., Awange, J., & Mostafaie, A. (2019). Understanding the global hydrological droughts of 2003–2016 and their relationships with teleconnections. Sci. Total Environ., 650, 2587–2604. DOI: 10.1016/j.scitotenv.2018.09.231
Fereydooni, M., Jalilvand, A., Tajrishi, M., & Broca, L. (2016). Estimation of rainfall amount using satellite data of soil moisture and SM2RAIN model, (study case: Shabstar region). 10th National Congress of Civil Engineering. Sharif University of Technology. Iran. [In Persian]
Ghajarnia, N., Liaghat, A., & Arasteh, P. D. (2015). Comparison and evaluation of high resolution precipitation estimation products in Urmia BasinIran. Atmosph. Res., 158, 50-65. DOI: 10.1016/j.atmosres.2015.02.010
Guo, H., Chen, S., Bao, A., Hu, J., Yang, B., & Stepanian, P. M. (2015). Comprehensive evaluation of high-resolution satellite-based precipitation products over China. Atmosphere, 7(1), 6. DOI: 10.3390/atmos7010006
Herold, N., Alexander, L. V., Donat, M. G., Contractor, S., & Becker, A. (2016). How much does it rain over land?, Geophys. Res. Lett., 43, 341–348. DOI: 10.1002/2015GL066615
Hong, Y., Hsu, K.L., Moradkhani, H., & Sorooshian, S. (2006). Uncertainty quantification of satellite precipitation estimation and monte carlo assessment of the error propagation into hydrologic response. Water Resour. Res., 42, W08421. DOI: 10.1029/2005WR004398
Jalilvand, E., Tajrishy, M., Hashemi, S. A. G. Z., & Brocca, L. (2019). Quantification of irrigation water using remote sensing of soil moisture in a semi-arid region. Remote Sen. Environ., 231, 111226. DOI: 10.1016/j.rse.2019.111226
Khoshkho, Y. (2018). Evaluating soil surface energy balance model and satellite images to estimating mean daily soil surface temperature. J. Water Soil Conserv., 25(3), 177-192. DOI:10.22069/JWSC.2018.14846.2989
Mehrabi, M., Hamzeh, S., alavipanah, S. K., Kiavarz, M., & Ziaee, R. (2019). Estimating soil moisture using remotely sensed data and surface energy balance system. Watershed Eng. Manage., 11(3), 759-770. [In Persian] DOI: https://doi.org/10.22092/ijwmse.2018.115271.1354
Mekonnen, D. F. (2009). Satellite remote sensing for soil moisture estimation: Gumara catchment, Ethiopia. Thesis in M. Sc., International Institute for Geo-information Science and Earth Observation, Netherland. https://purl.utwente.nl/essays/93086
Pendergrass, A., G., & Knutti, R. (2018). The uneven nature of daily precipitation and its change. Geophys. Res. Lett. 45, 11980–11988. DOI: 10.1029/2018GL080298
Sadeghi, M., Tuller, M., Warrick, A. W., Babaeian, E., Parajuli, K., Gohardoust, M. R., & Jones, S. B. (2019). An analytical model for estimation of land surface net water flux from near-surface soil moisture observations. J. Hydrol., 570, 26-37. DOI: 10.1016/j.jhydrol.2018.12.038
Saeedi, M., Sharafati, A., Brocca, L., & Tavakol, A. (2022). Estimating rainfall depth from satellite-based soil moisture data: A new algorithm by integrating SM2RAIN and the analytical net water flux models. J. Hydrol., 610, 127868. DOI: 10.1016/j.jhydrol.2022.127868
Song, S., Brocca, L., Wang, W., & Cui, W. (2020). Testing the potential of soil moisture observations to estimate rainfall in a soil tank experiment. J. Hydrol., 581, 124368. DOI: 10.1016/j.jhydrol.2019.124368
Taromi, M., Azizian, A., & Brocca, L. (2020). Estimation of Precipitation using satellite-based surface soil moisture (SSM) in semi-arid and humid climates of Iran. Iran. J. Soil Water Res., 51(6), 1427-1440. [In Persian] DOI: 10.22059/ijswr.2020.294870.668446
Warrick, A. W. (1975). Analytical solutions to the one-dimensional linearized moisture flow equation for arbitrary input. Soil Sci., 120(2), 79-84.
Zhang, Y., Hou, J., & Huang, C. (2022). Integration of satellite-derived and ground-based soil moisture observations for a precipitation product over the Upper Heihe River Basin, China. Remote Sens., 14(21), 5355. DOI: 10.3390/rs14215355