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Seasonal Water Temperature Variability of Springs From Porous Sediments in Gryżynka Valley, Western Poland


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Aldwell C.R., Burdon D.J., 1986. Temperature of infiltration and groundwater. In: Proceedings of Conjuctive Water UseSymposium. Budapest, IAHS Publ. no. 156.Search in Google Scholar

Baena C.L., Andreo B., Mudry J., Cantos F.C., 2009. Groundwater temperature and electrical conductivity as tools to characterize flow patterns in carbonate aquifers: The Sierra de las Nieves karst aquifer, southern Spain. HydrogeologyJournal 17: 843-853.10.1007/s10040-008-0395-xSearch in Google Scholar

Becker M.W., Georgian T., Ambrose H., Siniscalchi J., Fredrick K., 2004. Estimating flow and flux of ground water discharge using water temperature and velocity. Journalof Hydrology 296: 221-233.10.1016/j.jhydrol.2004.03.025Search in Google Scholar

Bender S., Einsiedl F., Wohnlich S., 2001. Scheme for development of monitoring networks for springs in Bavaria, Germany. Hydrogeology Journal 9: 208-216.10.1007/s100400100124Search in Google Scholar

Bundschuh J., 1993. Modeling annual variations of spring and groundwater temperatures associated with shallow aquifer systems. Journal of Hydrology 142: 427-444.10.1016/0022-1694(93)90022-2Search in Google Scholar

Bundschuh J., 1995. Assessing the contamination potential of groundwater using its temporal temperature variations. In: Proceedings of Models for Assessing and MonitoringGroundwater Quality Symposium. Boulder, IAHS Publ. no. 227.Search in Google Scholar

Chełmicki W., Jokiel P., Michalczyk Z., Moniewski P., 2011. Distribution, discharge and regional characteristics of springs in Poland. Episodes 34: 244-256.10.18814/epiiugs/2011/v34i4/003Search in Google Scholar

Graf R., 2006. Komentarz do mapy hydrologicznej w skali 1:50 000. N-33-139-A Lubrza. (Coments to hydrological map 1:50 000. N-33-139-A Lubrza). GEOMAT, Poznań.Search in Google Scholar

James E.R., Manga M., Rose T.P., Hudson G.B., 2000. The use of temperature and the isotopes of O, H, C, and noble gases to determine the pattern and spatial extent of groundwater flow. Journal of Hydrology 237: 100-112.10.1016/S0022-1694(00)00303-6Search in Google Scholar

Leaver J.D., Unsworth C.P., 2007. System dynamics modeling of spring behavior in the Orakeikorako geothermal field, New Zealand. Geothermics 36: 101-114.10.1016/j.geothermics.2006.08.001Search in Google Scholar

Malard F., Chapuis R., 1995. Temperature logging to describe the movement of sewage-polluted surface water infiltrating into a fractured rock aquifer. Journal of Hydrology 173: 191-217.10.1016/0022-1694(95)02711-WSearch in Google Scholar

Manga M., 1998. Advective heat transport by low temperature discharge in the Oregon Cascades. Geology 26: 799-802.10.1130/0091-7613(1998)026<0799:AHTBLT>2.3.CO;2Search in Google Scholar

Manga M., 1999. On the timescales characterizing groundwater discharge at springs. Journal of Hydrology 219: 56-69.10.1016/S0022-1694(99)00044-XSearch in Google Scholar

Manga M., 2001. Using springs to study groundwater flow and active geologic processes. Annual Reviews in EarthPlanetary Sciences 29: 201-228.10.1146/annurev.earth.29.1.201Search in Google Scholar

Manga M., Kirchner J.W., 2004. Interpreting the temperature of water at cold springs and the importance of gravitational potential energy. Water Resources Research. 40, W05110, DOI 10.1029/2003WR002905.10.1029/2003WR002905Search in Google Scholar

Moniewski P., 2004. Źródła okolic Łodzi (Springs nearby city of Łódź). Acta Geographica Lodziensia 87: 1-140.Search in Google Scholar

Musgrove M., Stern L.A., Banner J.L., 2010. Springwater geochemistry at Honey Creek State Natural Area, central Texas: Implications for surface water and groundwater interaction in a karst aquifer. Journal of Hydrology 388: 144-156.10.1016/j.jhydrol.2010.04.036Search in Google Scholar

Szczucińska A.M., 2009. Wypływy wód podziemnych w RynnieGryżyńsko-Grabińskiej (Groundwater outflows in the Gryżyna-Grabin tunnel valley). Wyd. Bogucki, Poznań, 117 pp.Search in Google Scholar

Szczucińska A.M., in press. Spatial distribution and hydrochemistry of springs and seepage springs in the Lubuska Upland of western Poland. Hydrology Research. Doi: 10.2166/nh.2013.249.10.2166/nh.2013.249Search in Google Scholar

Szczucińska A.M., Marciniak M., 2008. Zones of groundwater outflow in the Gryzyna-Grabin tunnel valley as an example of groundwater outflows on the Polish Plain. In: G. Migiros, G. Stamatis, G. Stournaras (eds.), Proceedingsof 8th International Hydrogeological Congress of Greece. The Geological Society of Greece, Athens: 863-868.Search in Google Scholar

Szczucińska A.M., Siepak M., Zioła-Frankowska A., Marciniak M, 2010. Seasonal and spatial changes of metal concentrations in groundwater outflows from porous sediments in the Gryżyna-Grabin Tunnel Valley in western Poland. Environmental Earth Sciences 61: 921-930.10.1007/s12665-009-0407-8Search in Google Scholar

Taniguchi M., Uemura T., 2005. Effects of urbanization and groundwater flow on the subsurface temperature in Osaka, Japan. Physics of the Earth and Planetary Interiors 152: 305-313.10.1016/j.pepi.2005.04.006Search in Google Scholar

Taylor C.A., Stefan H.G., 2009. Shallow groundwater temperature response to climate change and urbanization. Journal of Hydrology 375: 601-612.10.1016/j.jhydrol.2009.07.009Search in Google Scholar

Wampler P.J., Sisson A.J., 2010. Spring flow, bacterial contamination, and water resources in rural Haiti. EnvironmentalEarth Science. DOI: 10.1007/s12665-010-0645-9.10.1007/s12665-010-0645-9Search in Google Scholar

Woś A., 1999. Klimat Polski (Climate of Poland). PWN, Warszawa, 130 pp.Search in Google Scholar

ISSN:
0137-477X
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Geosciences, Geography