The Novel Updates of the Hydrogeological Model of Latvia
Abstract
Keywords: |
Base flow of rivers; hydrogeological model; hydrographical network; numerical interpolation; Latvia
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References
Water Framework Directive. 2000. (2000/60/EC of the European Parliament and of the Council). Official Journal of the European Communities, L327, 22.12.2000.
Environmental Simulations, Inc., Groundwater Vistas. Version 6, Guide to using, 2011.
A. Spalvins, J. Slangens, I. Lace, K. Krauklis, and O. Aleksans, “Efficient Methods Used to Create Hydrogeological Model of Latvia,” In International Review on Modelling and Simulations (I.RE.MO.S), Praise Worthy Prize, vol. 6, no. 5, Okt. 2013, pp. 1718–1726.
A. Spalvins, J. Slangens, I. Lace, O. Aleksans, K. Krauklis, “Improvement of hydrogeological models: a case study,” International Review on Modelling and Simulations (I.RE.MO.S.), Praise Worthy Prize, Naples, Italy, vol. 8, no. 2, April 2015, pp. 266–276
A. Spalvins, O. Aleksans, I. Lace, “Improving of transmissivity maps for hydrogeological model of Latvia,” in 15th international multidisciplinary scientific geo conference (SGEM 2015), June 18–24, 2015, Albena, Bulgaria, Conference Proceedings, 2015, vol. 1, pp. 667–684
A. Spalvins, I. Lace, K. Krauklis, “Improved methods for obtaining permeability maps of aquifers for hydrogeological model of Latvia,” Scientific Journal of Riga Technical University, Boundary Field Problems and Computer Simulation, RTU Press, Riga, 2015. http://dx.doi.org/10.7250/bfpcs.2015.006
K. Krauklis, A.Spalvins, J. Slangens, “Hidrogeological model of Latvia LAMO4 as a tool for investigating processes of nature. Sources of groundwater inflow for Iecava river,” Scientific Journal of Riga Technical University, Boundary Field Problems and Computer Simulation, RTU Press, Riga, 2015. http://dx.doi.org/10.7250/bfpcs.2015.007
G. Strang, Linear algebra and its applications. Academic Press Inc., New York, 1976, p. 373.
A.W. Harbaugh, MODFLOW-2005, U.S. Geological Survey Modular Ground-Water Model: the ground-water flow process, chap 16, book 6, US Geological Survey Techniques and Methods 6-A16, USGS, Reston, VA
Pollok D. W. User‘s Guide for MODPATH/MODPATH-Plot, Version3. A particle tracking post-processing package for MODFLOW, the US Geological Survey finite-difference groundwater flow model, U.S. Geological survey, September 1994.
R. Mokrik, V. Juodkazis, A. Stuopis, and J. Mazeika, “Isotope geochemistry and modelling of the multi-aquifer system in the eastern part of Lithuania,” Hydrogeology journal, vol. 22, 2014, pp. 925–941. http://dx.doi.org/10.1007/s10040-014-1120-6
Dzenis-Litovsky A. I., editor, Hydrogeology of USSR, Latvian SSR, Volume XXXI, part1, Nedra, Moskow 1967, p. 200 (in Russian).
I. Dzilna, Resources, composition and dynamics of groundwater for the middle part of the Baltic area. (Zinatne, Riga, 1970, p. 197, (in Russian).
P.A. Domenico, and F.W. Schwartz. Physical and Chemical Hydrogeology, John Wiley and sons, Inc. – 2 end ed. New York, p. 506, 1998.
De Barry, Paul A., Watersheds: processes assessment and management. Willey and Sons Inc. Hoboken, New Jersey, 2004, p. 700.
DOI: 10.7250/bfpcs.2015.005
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