Details
Title
Groundwater impact assessment of Lake Czorsztyn after 25 years of its operationJournal title
Archives of Environmental ProtectionYearbook
2022Volume
48Issue
2Affiliation
Humnicki, Włodzimierz : Faculty of Geology, University of Warsaw, Poland ; Krogulec, Ewa : Faculty of Geology, University of Warsaw, Poland ; Małecki, Jerzy : Faculty of Geology, University of Warsaw, Poland ; Szostakiewicz-Hołownia, Marzena : Faculty of Geology, University of Warsaw, Poland ; Wojdalska, Anna : Faculty of Geology, University of Warsaw, Poland ; Zaszewski, Daniel : Faculty of Geology, University of Warsaw, PolandAuthors
Keywords
water reservoir, ; groundwater, ; river, ; hydrogeology, ; sustainable water management, ; Pieniny Klippen BeltDivisions of PAS
Nauki TechniczneCoverage
65-78Publisher
Polish Academy of SciencesBibliography
- Al-adili, A., Khasaf, S. & Ajaj, A.W.S. (2014). Hydrological Impacts of Iraqi Badush Dam on Groundwater, 4, June, pp. 90–106.
- Allen, P.A. (1997). Earth Surface Processes. John Wiley & Sons, Hoboken, NJ, USA.
- Appelo, C.A.J. & Postma, D. (2005). Geochemistry, Groundwater and Pollution. A.A. Balkema, Leiden.
- Baxter, R.M. (1977). Environmental Effects of Dams and Impoundments, Annual Review of Ecology and Systematics, 8, pp. 255–283.
- Birkenmajer, K. (1979). Geological Guidebook to the Pieniny Klippen Belt. Wydawnictwo Geologiczne, Warsaw. (in Polish)
- Birkenmajer, K. (2017). Geology of the Pieniny Mountains - Monographs of the Pieniny Mts. Vol. 3. Pieniński Park Narodowy, Krościenko on the Dunajec. (in Polish)
- Çelik, R. (2018). Impact of Dams on Groundwater Static Water Level Changes: a Case Study Kralkızı and Dicle Dam Watershed, Uluslararası Muhendislik Arastirma ve Gelistirme Dergisi, 10, 2, pp. 119–126, DOI: 10.29137/umagd.442483.
- Chowaniec, J. & Witek, K. (1997). Hydrogeological Map od Poland 1: 50 000 with Description. Polish Geological Institute - National Research Institute, Warsaw. (in Polish)
- Clark, I. (2015). Groundwater Geochemistry and Isotopes. CRC Press, Taylor & Francis Group, Boca Raton, London, New York.
- Claverie, M., Vermote, E.F., Franch, B. & Masek, J.G. (2015). Evaluation of the Landsat-5 TM and Landsat-7 ETM+ surface reflectance products, Remote Sensing of Environment, 169, pp. 390–403, DOI: 10.1016/j.rse.2015.08.030.
- Congedo, L. (2020). Semi-Automatic Classification Plugin Documentation. (https://media.readthedocs.org/pdf/semiautomaticclassificationmanual-v4/latest/semiautomaticclassificationmanual-v4.pdf (21.10. 2020))
- Francis, B.A., Francis, L.K. & Cardenas, M.B. (2010). Water table dynamics and groundwater-surface water interaction during filling and draining of a large fluvial island due to dam-induced river stage fluctuations, Water Resources Research, 46, 7, pp. 1–5, DOI: 10.1029/2009WR008694.
- Graf, W.L. (1999). Dam nation: A geographic census of american dams and their large-scale hydrologic impacts, Water Resources Research, 35, 4, pp. 1305–1311, DOI: 10.1029/1999WR900016.
- Ho, M., Lall, U., Allaire, M., Pal, I., Raff, D., Wegner, D., Devineni, N. & Kwon, H.H. (2017). The future role of dams in the United States of America, Water Resources Research, pp. 982–998, DOI: 10.1002/2016WR019905.Received.
- Humnicki, W. (2007). Hydrogeology of the Pieniny Mountains. Wydawnictwa Uniwersytetu Warszawskiego, Warsaw. (in Polish)
- Humnicki, W. (2009). Geological conditions of groundwater occurrence in the Pieniny Klippen Belt (West Carpathians, Poland), Studia Geologica Polonica, 132, pp. 39–69. (in Polish)
- Jóźwiak, K. & Krogulec, E. (2006). Geochemical modeling as an element ofprotected area monitoring, Przeglad Geologiczny, 54, 11, pp. 987–992. (in Polish)
- Kulka, A., Rączkowski, W., Żytko, K., Gucik, S. & Paul, Z. (1985). Detailed Geological Map of Poland, scale 1: 50 000 - Szczawnica - Krościenko sheet. Wydawnictwa Geologiczne, Warsaw. (in Polish)
- Łaniewski, J. (1997). Czorsztyn, Gospodarka Wodna, 12, pp. 391–393, .
- Li, H., Wang, C., Zhong, C., Su, A., Xiong, C., Wang, J. & Liu, J. (2017). Mapping urban bare land automatically from Landsat imagery with a simple index, Remote Sensing, 9, 249, pp. 1–15, DOI: 10.3390/rs9030249.
- Loveland, T.R. & Irons, J.R. (2016). Landsat 8: The plans, the reality, and the legacy, Remote Sensing of Environment, 185, pp. 1–6, DOI: 10.1016/j.rse.2016.07.033.
- Małecka, D. (1981). Hydrogeology of Podhale. Wydawnictwa Geologiczne, Warsaw. (in Polish)
- Małecka, D., Humnicki, W., Małecki, J.J. & Łabaszewski, W. (1996). Characteristics and assessment of the current water quality in the area of the Czorsztyn Reservoir, Przegląd Geologiczny, 44, 11, pp. 1103–1110. (in Polish)
- Małecki, J.J. (1998). Role of aeration zone in forming chemical composition of shallow ground waters, based on cases of selected hydrogeochemical environments, Biuletyn Państwowego Instytutu Geologicznego, 381, pp. 1–219. (in Polish)
- Mika, A.M. (1997). Three decades of Landsat instruments, Photogrammetric Engineering and Remote Sensing, 63, 7, pp. 839–852.
- Parkhurst, D.L. & Appelo, C.A.J. (2013). Description of Input and Examples for PHREEQC Version 3—A Computer Program for Speciation, Batch-Reaction, One-Dimensional Transport, and Inverse Geochemical Calculations. U.S. Geological Survey Techniques and Methods. (http://pubs.usgs.gov/tm/06/a43/ (02.10. 2021))
- PN-89/C-04638/02. (1989). Water and sewage. Ion balance of water. Method of calculating the ionic balance of water. Warsaw. (in Polish)
- Przybyłek, J. (2016). Predictions and identification of groundwater impact of the Jeziorsko Lake during its long-term exploitation. , Gospodarka Wodna, 9, pp. 314–323.(in Polish)
- Richards, J.A. (2013). Remote Sensing Digital Image Analysis. An Introduction. Springer-Verlag, Berlin, Heidelberg.
- Szczepańska, J. & Kmiecik, E. (1998). Statistical data quality control in groundwater monitoring. Wydawnictwa AGH, Kraków. (in Polish).
- U.S. Geological Survey. (2016). Landsat 8 (L8) Data Users Handbook. Sioux Falls, USA.
- U.S. Geological Survey. (2020)a. Landsat 8 Level 2 Science Product ( L2SP ) Guide. Sioux Falls, USA.
- U.S. Geological Survey. (2020)b. Landsat 4-7 Collection 2 (C2) Level 2 Science Product (L2SP) Guide. Sioux Falls, USA.
- Wilk-Woźniak E., Pociecha A. & Mazurkiewicz-Boroń G. (2010) Comparison of choosen physico-chemical and biologocal parameters of the Czorsztyński dam reservoir in 1998 and 2005. Monographs of the Pieniny Mts. Vol. 2. Pieniński Park Narodowy, Krościenko on the Dunajec, pp. 107-121. (in Polish)
- Witczak, S., Kania, J. & Kmiecik, E. (2013). Catalog of selected physical and chemical indicators of groundwater pollution and their determination methods. Inspekcja Ochrony Środowiska, Warsaw. (in Polish)
- Woodcock, C.E., Allen, R., Anderson, M., Belward, A., Bindschadler, R., Cohen, W., Gao, F., Goward, S.N., Helder, D., Helmer, E., Nemani, R., Oreopoulos, L., Schott, J., Thenkabail, P.S., Vermote, E.F., Vogelmann, J., Wulder, M.A. & Wynne, R. (2008). Free Access to Landsat Imagery, Science, 320, 5879, pp. 1011–1012, DOI: 10.1126/science.320.5879.1011a.
- Zhang, L., Yang, D., Liu, Y., Che, Y. & Qin, D. (2014). Impact of impoundment on groundwater seepage in the Three Gorges Dam in China based on CFCs and stable isotopes, Environmental Earth Sciences, 72, 11, pp. 4491–4500, DOI: 10.1007/s12665-014-3349-8.
Date
29.06.2022Type
ArticleIdentifier
DOI: 10.24425/aep.2022.140767DOI
10.24425/aep.2022.140767Abstracting & Indexing
Abstracting & Indexing
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