Asghari moghadam, A. and Nadiri, A. and Pakniya, V. (2016). Using DRASTIC and SINTACS methods, use the Bostanabad plain. Journal of Hydrogeomorphology, 8(3), 21-52. (In Farsi)
Etebari, B. and Yaghobzade, M. and Shahabifard, F. and Adeli, H. and Rezaii, M. (2009). Check the aquifer model using GMS software. In: First International Water Crisis Conference. 10-12 Mar., ZabolUniversity, Zabol, Iran.
Kalantari, N. and Faryabi, M. and Rahimi, M. H. (2007). Investigation of groundwater pollution potential of Baghmalek plain using AVI method and GOD and DRASTIC models in GIS. Journal of Engineering Geology, 2(2), 431-450. (In Farsi)
Marofi, S. and Soleymani, S. and Ghobadi, M. and Rahimi, GH. And Marofi, H. (2012). Vulnerability assessment of Malayer plain aquifer using SINTACS and SI and DRASTIC models. Journal of Soil and Water Conservation Research, 3(19). (In Farsi)
Al kuisi, M., El-Naqa, A. and Hmmouri, N. (2006). Vulnerability mapping of shallow groundwater aquifer using SINTACS model in the Jordan Valley area, Jordan. Environmental Geology. 50: 651-667.
Anderson, M. P., Woessner. W. W., & Hunt,R.J. (2015). Applied Groundwater Modeling:Simulation of Flow and Advective Transport. Academic press.
Chetan P.S.Ahada ., Surindra Suthar. (2018). A GIS based DRASTIC model for assessing aquifer vulnerability in Southern Punjab,India. Modeling Earth System and Environment, vol.4, pp.635-645.
Jalali, M. (2011). Nitrate pollution of groundwater in Toyserkan, Wastern Iran. Environmental Earth Science, 62, 907-913.
-Grimaldi, C., R., Gaudio, F., Calomino, and A. H., Cardoso. (2009). A numerical groundwater flow model of upper and middle Trinity aquifer,Texas water development board. Hydrology, Vol.135, no.5, pp.425-431.
McMahon, A., Heathcote, J., Carey, M., and Erskine, A. (2001). Guide to Good Practice for the Development of Conceptual Models and the Selection and Application of mathematical models of contaminant transport.
Moosavirad, S.M., Janardhana, M.R. & Khairy, H. (2013). Impact of anthropogenic activities on the chemistry and quality of groundwater: A case study from a terrain near Zarand City, Kerman Province, SE Iran. Environment Earth Sciences, 69, 2451-2467.
Van Stempvoort ,D., Ewert ,L., Wassenaar, L. (1993). Aquifer Vulnerability Index: A GIS - Compatible Method For Groundwater Vulnerability Mapping. Canadian Water Resources Journal / Revue canadienne des ressources hydriques. no.18,pp.25-37.
Ahmadi, E., Abroomand, M. (2009). Investigate the potential pollution of Khash plain aquifer using GIS. Journal of Applied Geology, 5(1):1-11.
Brahim, F.B., Kanfir, H. & Bouri, S. 2012. Groundwater Vulnerability and Risk mapping ofnthe Northern sfax Aquifer, Tunisia. Arabian Journal for Science and Engineering, 37(5): 1405-1421.
Colins Johnny,J., Sashikkumar,M.C., Anas,P.A., Kishan,E.A., 2015. Sintacs Model for Groundwater Vulnerability Mapping using Remote Sensing and GIS Techniques : A Case Study on Dindigul Block, International Journal of ChemTech Research, vol.8, no.7, pp. 56-64.
Civita M. (1994). Le carte della vulnerabilita degli acqiferi all inquinmento. Teori and practia (Aquifer vulnerability maps to pollution (in italian): pitagora Ed, Bologna, 325p.
Chitsazan, M., Kashkoi, H.E. (2006). Ground water modeling and solving hydrological problems. Shahid Beheshti Chamran University,8:300-350.
Civita M, Massimo.(1990) Legenda unificata per le Carte della Vulnerabilita dei corpi idrici sotterranei/ unified legend for the aquifer pollution vulnerability Maps, Studi sulla Vulnerabilita degli Acquife, Pitagora Edite, Bologna.
Fadae nobakhtegan, A. (2014). Assessment Intrinsic vulnerability Free aquifer of Shiraz plain using DRASTIC models, COMPOSITE DRASTIC (CD) in GIS, Thesis of Master of Environmental Health Engineering. University Shiraz Medical Sciences.
Jafari, H., Valizade, M. (2014). Modeling the transfer pollutant Nitrate in Shahroud aquifer. Journal of Geochemistry, 3(1).
Lodwick W.A., Monson W. and Svoboda L. 1990. Attribute error and sensitivity analysis of map operation in GIS:
suitability analysis. Int J Geogr Inf Syst, 4(4): 413-428.
Harroni, Y. (2016). Application of MODFLOW and DRASTIC models to study nitrate pollution and groundwater vulnerability in Buin-Daran plain of Isfahan, Master Thesis, water resources Department, Isfahan University of Technology.
Mahmmoodzade, A., Rezaian, S. (2013). Analysis Vulnerability of groundwater in Isfahan Meymeh plain using DRASTIC mothod. Journal of Ecology, 39(2):45-60.
Naseri, H., Sareminejad, F. (2011). Comparison of aquifer vulnerability assessment DRASTIC methods and fuzzy, case study of the plain Suleiman Mosque. Journal of Natural Geography, 4(11):17-34.
Nakhai, M., Amiri, M. (2013). Assessment potential pollution and analysis Groundwater sensitivity in Khatton abad aquifer using DRASTIC model. Journal of Advanced Geology, 3(8):1-10.
Napolitano p. (1995). Gis for aquifer vulnerability assessment in the piana campana, southern Italy, using the DRASTIC and SINTACS method. Thesis of Master of Siences in Geology Survey. International Institute for Aerospace Survey and Earth Sciences.
Rahman, A. (2008). A GIS based DRASTIC model for assessing groundwater vulnerability in shallow aquifer in Aligarh. India. Applied Geography, 28:32-53.
Rangzan, K., Zeyaiyan, P. & Mirzaei, P. (2008). Zoning of Varamin plain aquifer vulnerability using DRASTIC and experimental evaluation of the effect of unsaturated area in GIS environment.
Razandi, y., Malekian, A.(2015)Assessment of temporal and spatial changes of groundwater quality using hybrid Boolean, Fuzzy and Geostatical (Case study: Varamin plain). Watershed Management Research (pajouhesh & Sazandegi) NO 111 PP:87-99.
Shiva, N., Kamali, A. (2011). Assessment of tablecloth contamination potential Groundwater of Zarand plain using the DRASTICS model in GIS. National Irrigation and Evaporation Reduction Seminar.
Shahrokhniya, H. (2009). assessment of ability DRASTIC and GODS models in vulnerability: A case study of Varamin Plain Aqufer,Master Thesis. Geology Department, Azad University of research sciences, Tehran.
Valivand, F., Katibiye, H. (2017). The study of environmental effects of Nitrate transfer in Varamin aquifer using numerical modeling, Journal of water and wastewater, Vol. 30, No.4, pp: 130-136.Zheng. C., and Wang. P. (1999). MT3DMS: A Modular Three-Dimensional Multispecies Transport Model. Strategic Environmental Research and Development Program (SERDP).