Multi-directional flow dynamics shape groundwater quality in sloping bedrock strata
Tài liệu tham khảo
Allen, 1998
Allen, 2010, Groundwater level responses in temperate mountainous terrain: regime classification, and linkages to climate and streamflow, Hydrol. Process., 24, 3392, 10.1002/hyp.7757
Bakalowicz, 2005, Karst groundwater: a challenge for new resources, Hydrogeol. J., 13, 148, 10.1007/s10040-004-0402-9
Ball, 1991, User's manual for WATEQ4F. U.S, Geological Survey, Open-File Report, 91
Beniston, 2007, Future extreme events in European climate: an exploration of regional climate model projections, Clim. Change, 81, 71, 10.1007/s10584-006-9226-z
Daniele, 2013, Hydrogeochemistry and geochemical simulations to assess water-rock interactions in complex carbonate aquifers: The case of Aguadulce (SE Spain), Appl. Geochem., 29, 43, 10.1016/j.apgeochem.2012.11.011
Delbart, 2014, Temporal variability of karst aquifer response time established by the sliding-windows cross-correlation method, J. Hydrol., 511, 580, 10.1016/j.jhydrol.2014.02.008
Goderniaux, 2013, Partitioning a regional groundwater flow system into shallow local and deep regional flow compartments, Water Resour. Res., 49, 2274, 10.1002/wrcr.20186
Eckhardt, 2003, Potential impacts of climate change on groundwater recharge and streamflow in a central European low mountain range, J. Hydrol., 284, 244, 10.1016/j.jhydrol.2003.08.005
Frich, 2002, Observed coherent changes in climatic extremes during the second half of the twentieth century, Clim. Res., 19, 193, 10.3354/cr019193
Gabrielli, 2012, The role of bedrock groundwater in rainfall-runoff response at hillslope and catchment scales, J. Hydrol., 450, 117, 10.1016/j.jhydrol.2012.05.023
Götze, K., 1969: Ergebnisbericht über die im Objekt Kammerforst 1968 niedergebrachten Hydro-Bohrungen Kammerforst 1-6/68. VEB Hydrogeologie, unpublished groundwater exploration report.
Haitjema, 2005, Are water tables a subdued replica of the topography?, Groundwater, 43, 781
Hemker, 1999, Transient well flow in vertically heterogeneous aquifers, J. Hydrol., 225, 1, 10.1016/S0022-1694(99)00137-7
Herrmann, 2017, Attached and suspended denitrifier communities in pristine limestone aquifers harbor high fractions of potential autotrophs oxidizing reduced iron and sulfur compounds, Microb. Ecol., 74, 264, 10.1007/s00248-017-0950-x
Huckriede, 2011, Geological characterisation of reservoir and barrier rocks in the deeper subsurface of the Free State of Thuringia (Germany) (in German), Schriftenreihe der Deutschen Gesellschaft für Geowissenschaften, 74, 89, 10.1127/sdgg/74/2011/188
Jehne, P., 1978. Ergebnisbericht Kammerforst 1978. VEB Hydrogeologie, unpublished exploration report.
Kiraly, L., 2003. Karstification and Groundwater Flow, Speleogenesis and Evolution of Karst Aquifers 1(26), 155-192.
Klimchouk, 2004, Towards defining, delimiting and classifying epikarst: Its origin, processes and variants of geomorphic evolution, Speleogenesis and Evolution of Karst Aquifers, 2, 1
Klimchouk, 2000, 45
Kohlhepp, 2017, Aquifer configuration and geostructural links control the groundwater quality in thin-bedded carbonate-siliciclastic alternations of the Hainich CZE, central Germany, Hydrol. Earth Syst. Sc., 21, 6091, 10.5194/hess-21-6091-2017
Kumar, 2017, Nitrogen loss from pristine carbonate-rock aquifers of the Hainich Critical Zone Exploratory (Germany) is primarily driven by chemolithoautotrophic anammox processes, Front. Microbiol., 8, 1951, 10.3389/fmicb.2017.01951
Küsel, 2016, How deep can surface signals be traced in the critical zone? Merging biodiversity with biogeochemistry research in a central German Muschelkalk landscape, Front. Earth Sc., 4, 1
Larocque, 1998, Contribution of correlation and spectral analyses to the regional study of a large karst aquifer (Charente, France), J. Hydrol., 205, 217, 10.1016/S0022-1694(97)00155-8
Lazar, 2019, The endolithic bacterial diversity of shallow bedrock ecosystems, Sci. Total Environ., 679, 35, 10.1016/j.scitotenv.2019.04.281
Legout, 2007, Solute transfer in the unsaturated zone-groundwater continuum of a headwater catchment, J. Hydrol., 332, 427, 10.1016/j.jhydrol.2006.07.017
Lin, 2010, Earth's critical zone and hydropedology: concepts, characteristics, and advances, Hydrol. Earth Syst. Sc., 14, 25, 10.5194/hess-14-25-2010
Lischeid, 2002, Apparent translatory flow in groundwater recharge and runoff generation, J. Hydrol., 265, 195, 10.1016/S0022-1694(02)00108-7
Lohse, 2009, Interactions between biogeochemistry and hydrologic systems, Annu. Rev. Environ. Resour., 34, 65, 10.1146/annurev.environ.33.031207.111141
Mádl-Szőnyi, 2015, Basin-scale conceptual groundwater flow model for an unconfined and confined thick carbonate region, Hydrogeol. J., 23, 1359, 10.1007/s10040-015-1274-x
Nawaz, 2018, First insights into the living groundwater mycobiome of the terrestrial biogeosphere, Water Res., 145, 50, 10.1016/j.watres.2018.07.067
Parkhurst, 1999, User's guide to PHREEQC (Version 2), USGS Water-Resources Investigations Report, 99
Pronk, 2009, Percolation and particle transport in the unsaturated zone of a karst aquifer, Groundwater, 47, 361, 10.1111/j.1745-6584.2008.00509.x
Rouxel, 2011, Seasonal and spatial variation in groundwater quality along the hillslope of an agricultural research catchment (Western France), Hydrol. Process., 25, 831, 10.1002/hyp.7862
Salve, 2012, Rain, rock moisture dynamics, and the rapid response of perched groundwater in weathered, fractured argillite underlying a steep hillslope, Water Resour. Res., 48, 10.1029/2012WR012583
Salvucci, 1995, Hillslope and climatic controls on hydrologic fluxes, Water Resour. Res., 31, 1725, 10.1029/95WR00057
Sauter, 1995, Delineation of a karst aquifer using geological and hydrological data and information on landscape development, Carb. Evap., 10, 161, 10.1007/BF03175401
Schmidt, 2012, What is groundwater and what does this mean to fauna? – An opinion, Limnologica, 42, 1, 10.1016/j.limno.2011.08.002
Schwab, 2019, 14C-free carbon is a major contributor to cellular biomass in geochemically distinct groundwater of shallow sedimentary aquifers, Water Resour. Res., 55, 2104, 10.1029/2017WR022067
Šcukarev, S. A., 1974. In: Sydykov, Zh. S., Davletgalieva K. M.: Gidrohimicheskie klassifikacii i grafiki.
Smart, 1986, Characterisation of carbonate aquifers: a conceptual base, 1
Steenhuis, 1986, The Thornthwaite-Mather procedure as a simple engineering method to predict recharge, J. Hydrol., 84, 221, 10.1016/0022-1694(86)90124-1
Teichmüller, 1989
Tóth, 1995, Hydraulic continuity in large sedimentary basins, Hydrogeol. J., 3, 4, 10.1007/s100400050250
Tóth, 1999, Groundwater as a geologic agent: an overview of the causes, processes, and manifestations, Hydrogeol. J., 7, 1, 10.1007/s100400050176
Treffurt, 1982
Westphal, 2006, Limestone-marl alternations as environmental archives and the role of early diagenesis: a critical review, Int. J. Earth Sci., 95, 947, 10.1007/s00531-006-0084-8
White, 1969, Conceptual models for carbonate aquifers, Ground Water, 7, 180, 10.1111/j.1745-6584.1969.tb01279.x
White, 2015, Chemistry and karst, Acta Carsologica, 44, 349
Williams, 1983, The role of the subcutaneous zone in karst hydrology, J. Hydrol., 61, 45, 10.1016/0022-1694(83)90234-2
Zech, 2016, Impact of heterogeneous permeability distribution on the groundwater flow systems of a small sedimentary basin, J. Hydrol., 532, 90, 10.1016/j.jhydrol.2015.11.030