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Hydrogeological Conditions and Natural Factors Forming the Regime of Groundwater Levels in the Ivano-Frankivsk Region (Ukraine)

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of the article is to carry out a complex analysis of conditions and natural factors forming the hydrogeological regime as well as to integrate the existing information and groundwater monitoring data in Ivano-Frankivsk region for further creating the unified automated system to collect, process, analyze and store the monitoring observation data. The authors offer methodology, which is based on the geoinformation approach, for organizing and monitoring of the groundwater. The structure of spatial and attributive data that afford to systemize the existing schemes of the hydrogeological zoning as well as the results of long-term observations over variability of the groundwater levels and factors forming the hydrogeological regime were developed. The new approaches for improving the techniques to forecast the groundwater level with due consideration of temporal patterns for changes in water level, the Moon phases and seismic activity, are proposed. The obtained results are considered as an informational basis for reorganization of the state hydrogeological monitoring on the example of Ivano-Frankivsk region.
Rocznik
Strony
34--44
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
autor
  • Department of Geotechnogenic Safety and Geoinformatics, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street, Ivano-Frankivsk, 76019, Ukraine
  • Department of Geotechnogenic Safety and Geoinformatics, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street, Ivano-Frankivsk, 76019, Ukraine
autor
  • Department of Geotechnogenic Safety and Geoinformatics, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street, Ivano-Frankivsk, 76019, Ukraine
autor
  • Department of Geotechnogenic Safety and Geoinformatics, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street, Ivano-Frankivsk, 76019, Ukraine
autor
  • Department of Geotechnogenic Safety and Geoinformatics, Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street, Ivano-Frankivsk, 76019, Ukraine
Bibliografia
  • 1. Adushkin V., Ryabova A., Spivak A. 2017. Effects of the moon-solar tide in the Earth crust and Earth atmosphere. Physics of the Earth, 4, 76–92.
  • 2. Berezko O., Vasneva O. 2012. Groundwater monitoring in Belarus: implication and future prospects. Transboundary Aquifers in the Eastern Borders of the European Union, Springer Science+Business Media. Dordrecht, 115–120. DOI: 10.1007/978–94–007–3949–9_10.
  • 3. Ben-Jema F., Marino M.A ., Loaiciga H.A . 1994. Multivariate geostatistical design of groundwater monitoring networks. Journal of water resources planning and management-ASCE, 120, 505–522. DOI: 10.1061/(ASCE)0733–9496(1994)120:4(505).
  • 4. Brovko A., Brovko G., Koshliakov О. 2015. Estimation of geosystem stability as a methodological approach for determination of the technogenic impact on groundwater (case study of quaternary aquifer on the territory of Rivne NPP). Visnyk of Taras Shevchenko National University of Kyiv: Geology, 69, 75–78. DOI: 10.17721/1728–2713.69.12.75–78.
  • 5. Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 establishing a framework for Community action in the field of water policy [official website]. http://eur-lex.europa.eu/resource.html?uri=cellar:5c835afb2ec64577bdf8756d3d694eeb.0004.02/DOC_1&format=PDF [access: 29.01.2018].
  • 6. Hudak P., Loaiciga H. 1992. A location modeling approach for groundwater monitoring network augmentation. Water Resources Research, 28, 643–649. DOI: 10.1029/91WR02851
  • 7. Koshliakov O., Dyniak O., Koshliakova I. 2016. Hydrogeological and geoinformatical aspects of European standards implementation in Ukraine in the area of natural waters quality and water management. Proc. «Geoinformatics 2016» – XVth International Conference on Geoinformatics – Theoretical and Applied Aspects. http://www.earthdoc.org/publication/publicationdetails/?publication=84608 [access: 18.02.2018]. DOI: 10.3997/2214–4609.201600507.
  • 8. Maréchal J.-C. et al. 2002. Establishment of earth tides effect on water level fluctuations in an unconfined hard rock aquifer using spectral analysis. Current Science, 83 (1), 101–104.
  • 9. Pivovarova I. 2016. Optimization methods for hydroecological monitoring system. Journal of Ecological Engineering, 17(4), 30–34. DOI: 10.12911/22998993/64503.
  • 10. Ruban S., Shinkarevsky M., Nikolishina A. 2005. Groundwater of Ukraine, Kyiv.
  • 11. Shestopalov V. et al. 2010. Modern principles of hydrogeological zoning. Zbirnyk of scientific works of UkrSGEI, 3–4, 147 – 157.
  • 12. Shestopalov V., Liuta N. 2016. State and ways of reforming the state groundwater monitoring system taking into account international experience and the requirements of the European Union Water Framework Directive. Mineral Resources of Ukraine, 2, 3–4.
  • 13. Shtohryn L., Kasiyanchuk D. 2015. About the possible connection between periodicity of precipitation, activation of landslides and phases of the moon, Zbirnyk of scientific works of UkrSGEI, 4, 93–102.
  • 14. Tymkiv М., Davybida L. 2016. Analysis of the state of hydrogeological monitoring network within the territory of Ukraine and the possibilities of its optimization on the basis of the geoinformation approach. Proc. International scientific and technical conference of young scientists «GeoTerrace-2016», 157–160.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-76fc0287-fde2-4363-ae46-954293b78e63
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