Fluctuations of electrical conductivity as a natural tracer for bank filtration in a losing stream
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Mario Schirmer | Tobias Vogt | Olaf A. Cirpka | Philipp Schneider | E. Hoehn | P. Schneider | M. Schirmer | O. Cirpka | T. Vogt | Eduard Hoehn | Anja Freund | Anja Freund
[1] U. Beyerle,et al. Infiltration of river water to a shallow aquifer investigated with 3H/3He, noble gases and CFCs , 1999 .
[2] V. Acuña,et al. Surface–subsurface water exchange rates along alluvial river reaches control the thermal patterns in an Alpine river network , 2009 .
[3] Olaf A. Cirpka,et al. Assessing residence times of hyporheic ground water in two alluvial flood plains of the Southern Alps using water temperature and tracers , 2006 .
[4] Andrew T. Fisher,et al. Quantifying surface water–groundwater interactions using time series analysis of streambed thermal records: Method development , 2006 .
[5] R. Palmer,et al. Projected impacts of climate change on salmon habitat restoration , 2007, Proceedings of the National Academy of Sciences.
[6] Martin Reinhard,et al. Comparison of rhodamine WT and bromide in the determination of hydraulic characteristics of constructed wetlands , 2003 .
[7] A. Binley,et al. Temporal and spatial variability of groundwater–surface water fluxes: Development and application of an analytical method using temperature time series , 2007 .
[8] R. Fanelli,et al. Seasonal biogeochemical hotspots in the streambed around restoration structures , 2008 .
[9] Stephen E. Silliman,et al. Quantifying downflow through creek sediments using temperature time series: one-dimensional solution incorporating measured surface temperature , 1995 .
[10] J. Constantz,et al. Heat, Chloride, and Specific Conductance as Ground Water Tracers near Streams , 2007, Ground water.
[11] Mary P Anderson,et al. Heat as a Ground Water Tracer , 2005, Ground water.
[12] R. Stallman. Steady one‐dimensional fluid flow in a semi‐infinite porous medium with sinusoidal surface temperature , 1965 .
[13] Markus Hofer,et al. Analyzing Bank Filtration by Deconvoluting Time Series of Electric Conductivity , 2007, Ground water.
[14] E. Hoehn,et al. Radon in groundwater: A tool to assess infiltration from surface waters to aquifers , 1989 .
[15] P. Kitanidis,et al. A Bayesian geostatistical transfer function approach to tracer test analysis , 2006 .
[16] R. Drysdale,et al. The influence of diurnal temperatures on the hydrochemistry of a tufa‐depositing stream , 2003 .
[17] G. McLachlan,et al. The EM algorithm and extensions , 1996 .
[18] Michael E. Campana,et al. Seasonal variation in surface‐subsurface water exchange and lateral hyporheic area of two stream‐aquifer systems , 1998 .
[19] Ulla Maria Calles. Diurnal Variations in Electrical Conductivity of Water in a Small Stream , 1982 .
[20] Carol A. Johnston,et al. Sediment and nutrient retention by freshwater wetlands: effects on surface water quality , 1991 .
[21] William H. McDowell,et al. Biogeochemical Hot Spots and Hot Moments at the Interface of Terrestrial and Aquatic Ecosystems , 2003, Ecosystems.
[22] P. Young,et al. Dynamic harmonic regression. , 1999 .
[23] Tobias Vogt,et al. Estimation of seepage rates in a losing stream by means of fiber-optic high-resolution vertical temperature profiling , 2010 .
[24] John C. Wright,et al. PRODUCTIVITY STUDIES ON THE MADISON RIVER, YELLOWSTONE NATIONAL PARK1 , 1967 .
[25] Frederick J. Swanson,et al. Floods, channel change, and the hyporheic zone , 1999 .
[26] D. Walling. Solute Variations in Small Catchment Streams: Some Comments , 1975 .
[27] William A. Jury,et al. Simulation of solute transport using a transfer function model , 1982 .
[28] Ch. Berg,et al. Atlas schutzwürdiger Vegetationstypen der Schweiz., O. Hegg, C. Beguin, H. Zoller. Bundesamt für Umwelt, Wald und Landschaft (BUWAL), Bern (1993), 160 S. brosch., zahlr. Abb. und Farbtafeln, 27 lose Karten, 2 Deckfolien in Glanzkartonmappe. Preis nicht angegeben , 1996 .
[29] K. Cho,et al. Evaluation of pollutants removal efficiency to achieve successful urban river restoration. , 2009, Water science and technology : a journal of the International Association on Water Pollution Research.
[30] Peter C. Young,et al. G: The CAPTAIN Toolbox , 2010 .
[31] A. Hill,et al. Modeling the effects of lowland stream restoration projects on stream-subsurface water exchange , 2008 .
[32] S. Wondzell,et al. Geomorphic controls on hyporheic exchange flow in mountain streams , 2003 .
[33] Rodney A. Sheets,et al. Lag times of bank filtration at a well field, Cincinnati, Ohio, USA , 2002 .
[34] M. Cardenas. Stream‐aquifer interactions and hyporheic exchange in gaining and losing sinuous streams , 2009 .
[35] Jim Constantz,et al. Heat as a tracer to determine streambed water exchanges , 2008 .
[36] S. Davis,et al. Ground‐Water Tracers — A Short Review , 1980 .
[37] T. Vogt,et al. Untersuchung der Flusswasserinfiltration in voralpinen Schottern mittels Zeitreihenanalyse , 2009 .
[38] H. Odum. Primary Production in Flowing Waters1 , 1956 .
[39] J. Stanford,et al. The hyporheic habitat of river ecosystems , 1988, Nature.
[40] F. Reinstorf,et al. Measuring methods for groundwater – surface water interactions: a review , 2006 .
[41] E. Martí,et al. Diurnal variation in dissolved oxygen and carbon dioxide in two low-order streams , 1998 .