American Journal of Geophysics, Geochemistry and Geosystems
Articles Information
American Journal of Geophysics, Geochemistry and Geosystems, Vol.2, No.3, Jun. 2016, Pub. Date: Jul. 27, 2016
Role of Geological Structures and Lithology in the Quantitative and Qualitative Changes of Takestan Aquifer
Pages: 23-30 Views: 3147 Downloads: 1023
Authors
[01] Naser Ebadati, Geology Department, Science Faculty, Islamshahr Branch, Islamic Azad University, Islamshahr, Iran.
Abstract
Takestan region constitutes part of the feeding and underground waters intake to Qazvin plain aquifer and such waters gradually change quantitatively and qualitatively through time along the path. The aim of this study is determining the interactive effects of water sources and geological structures, lithology and the resulting qualitative changes as well as evaluating the role of structural factors in quantitative changes of the area water sources. For this purpose, to assess the underground water sources and range of groundwater tables the existing ‏144‏ exploratory boreholes in the understudy area range were used and physical and chemical analyses were performed through sampling from the wells in ‏5‏ station and the changes in anions, cations, TDS,‎ EC‏ and ‏TH‏ values for either one of the parts were obtained. Based on the results of surface waters and groundwater tables' quality analysis as well as examining the geological maps, this paper deals with the analyzing of the relationship between water features and structural-geological changes of the under study area. There is a significant relationship between lithology features, structural geology of the basin and quantitative-qualitative changes of water sources in the area.‎
Keywords
Takestan, Aquifer, Hydrogeology, Quality Changes
References
[01] Abdinam A., (2004); Mapping soil sampling survey using satellite data with numerical values of soil salinity in the plain of Qazvin.
[02] Alberti, A. A., Comin-Chiaramonti, P., Dibattistini, G., Nicolletti, M., Petrocciani, C., Siniqoi, S., (1976); Geochronology of the eastern Azerbaijan volcanic plateau (north-west Iran), Rc. Soc. Ital. mainer. Petr, Vol. 32, pp. 579-589.
[03] Aganabati, A. (2004); Geological of Iran, published Geological survey of Iran, edition 1, 556p.
[04] Annells, R. N., Arthurton, R. S., Bazely, R. A., Davis, R. G., 1975. Explanatory text of the Qazvin and Rasht quadrangles map (1:250000), Geological Survey of Iran.
[05] Askari., A. Masaedi. A (2009); Spatial analysis of ground water quality by geostatistical analysis of geographic information systems in Qazvin Plain study,
[06] Asiabanha, A. (1991); petrology and geochemistry of the volcanic rocks of Mulla Ali, North West Qazvin, Master's thesis, Tehran University, 152 p.
[07] Azizi G., (2003); Regarding the recent drought and groundwater resources in the plain of Qazvin, geographical research. Vol. 46, pp131-143.
[08] Berberian, M., (1983); southern Caspian: A compressional depression floored by a trapped, 1983. modified oceanic crust, Canadian Journal of Earth Science, Vol. 20, pp.163-183.
[09] Dehghani, AA. Asgari, M. Masaedi, A., (2009); Comparison of three methods of artificial neural networks, fuzzy inference system, neural adaptive and geostatistical interpolation groundwater level, A Case Study of Qazvin, Iranian journal Agricultural Sciences and Natural Resources, Vol. 5, No. 16, pp. 517-528.
[10] Ebadati, N., Sepahvandi, S. (2015); Role of geological structures and lithology in the quantitative and qualitative changes of Eshtehard aquifers, Iranian journal of Echo hydrology, Vol. 2, No. 1, pp. 117-128.
[11] Hagigi, S., lashkari, M., (2006). Analysis of surface water and groundwater in the plain of the vineyards, the second Regional Conference on Applied Geology and Environment, proceeding, Islamic Azad University Islamshahr branch, P. 23.
[12] Jafari, Z., (2015); Role of geological structures and lithology in the quantitative and qualitative changes of Takestan aquifer. Master theses, Islamic Azad University, science and research branch, Tehran, 121p.
[13] Kanakoudis V., Tsitsifli, S. Samaras P., Zouboulis A. (2015); Erratum to: Water Pipe Networks Performance Assessment: Benchmarking Eight Cases Across the EU Mediterranean Basin; Water Quall Expo Health 7:109-DOI 10.1007/s12403-014-0124-8.
[14] Lashkari, M., Lashkaripour, G., (2011); Quality assessment of Iranshahr groundwater and water quality effects of geological formation, Proceedings, 3th conference of Earth Sciences, Geological Survey of Iran, pp. 1-7.
[15] Masoudi, M.; Patwardhan, A M. Gore, S D., (2006); A new methodology for producing of risk maps of soil salinity, Case study: Payab Basin, Iran, Jour.. Appl. Sci. Environ., Vol. 10, No. 3, pp. 9–13.
[16] Nabeel M. Gazzaz, Kamil Yusoff, M. Zaharin Aris, A. Juahir, H. Firuz Ramli, M.(2012); Artificial neural network modeling of the water quality index for Kinta River(Malaysia) using water quality variables as predictors, Marine pollution bulletin, Vol. 64, No. 11 pp: 2409-2420.
[17] Peyrovan, H. (2001); geochemical study of hydrothermal alteration zones of magmatic rocks Tarom and its environmental impacts, petrology Ph.D. thesis, Islamic Azad University, Science and Research Branch of Tehran, 134p.
[18] Qazvin Province Regional Water Organization: QPRWO (2011); According to the chemical characteristics of ground water (hydro geochemistry) study area Takestan. Office basic studies, studies report of water balance of the Takestan, Vol. 1, 86p.
[19] Sarani, N. Soltani, J. Sarani, S. and Moasheri, A., (2012); Comparison of artificial neural network and multivariate linear regression model to predict sodium adsorption ratio (Case Study: Sistan River, Iran), International Conference on Chemical, Ecology and Environmental Sciences (ICEES'2012) march 17-18, Bangkok, proceeding, Vol. 1 pp. 130-134.
[20] Sedagat, M. (2003); Earth and water source (hydro geology), published of Payam Noor university (Iran), 385p.
[21] Taherkhan b., (2010); Morpho tectonics and youth movements fault north of Qazvin, a master's thesis, Shahid Beheshti University, Iran, 105 p.
[22] Tooss Ab Consulting Engineers. (2009); Hydrogeology Report Water Resources of Qazvin, Volume III, Regional Water Qazvin Province Organization, 89 p.
[23] World health organization: WHO (1993); Study protocol for the world health organization project to develop a quality of life assessment instrument (WHOQOL), Division of mental health, Switzerland, special report, journal. Quality of life research, Vol. 2, pp. 153-159.
[24] W0rld health organization: WHO (2004); Guidelines for drink water W. H. O, wuliy, Vol. 102 and 103, WHO, GENEVA.
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