Title of article
Assessment of Spatial Structure of Groundwater Quality Variables Based on the Geostatistical Simulation
Author/Authors
Zehtabian, Gh.R. university of tehran - Faculty of Natural Resources, تهران, ايران , Mohammad Asgari, H. khoramshahr marine science and technology university, خرمشهر, ايران , Tahmoures, M. university of tehran - Faculty of Natural Resources, تهران, ايران
From page
215
To page
224
Abstract
Our main objective in the present study was to assess the spatial variation of chemical and physical water properties. Prior to the design of groundwater quality monitoring networks, it is essential to investigate the spatial structure of the groundwater quality variables. A case study is presented which used ground water quality observations from groundwater domestic wells in the Dameghan, Iran. The anslyses of the spatial structure used the following variables: Electrical Conductivity (EC), PH, SAR, TDS, Sodium (Na), Calcium (Ca), Magnesium (Mg). For all these variables the spatial structure is described by means of geostatistical simulation, used to yield a series of stochastic images characterized by equally probable spatial distributions of the chemical and physical water properties across the area. The data set including 5 years of annual observations. At first normality and homogeneity of data are examined. Then variographic analysis using two techniques including kriging, Weighted Moving Average (WMA) were applied for presenting spatial variation of water properties. Finally comparison of the results using statistical techniques showed that for more groundwater quality variables (e.g. TDS, EC, Cation, Na, Ca) kriging technique performed better than WMA 2 technique in characterizing the spatial variability. WMA-2 technique only for some groundwater quality variables like SAR and Mg has better result than kriging to simulate groundwater quality variables
Keywords
Water properties , Interpolation , Geostatistics , Spatial variation , Dameghan , Iran
Journal title
Desert
Journal title
Desert
Record number
2552352
Link To Document