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Regionalization of transit time estimates in montane catchments by integrating landscape controls
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title
Regionalization of transit time estimates in montane catchments by integrating landscape controls
(English)
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author
Dörthe Tetzlaff
object named as
D. Tetzlaff
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3
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Markus Hrachowitz
object named as
M. Hrachowitz
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1
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Chris Soulsby
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2
object named as
C. Soulsby
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Iain A. Malcolm
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5
object named as
I. A. Malcolm
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author name string
J. J. C. Dawson
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4
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publication date
May 2009
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published in
Water Resources Research
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volume
45
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issue
5
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cites work
The future of distributed models: Model calibration and uncertainty prediction
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A physically based, variable contributing area model of basin hydrology / Un modèle à base physique de zone d'appel variable de l'hydrologie du bassin versant
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Conceptualization in catchment modelling: simply learning?
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A Leisurely Look at the Bootstrap, the Jackknife, and Cross-Validation
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Measuring catchment-scale chemical retardation using spectral analysis of reactive and passive chemical tracer time series
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Using long-term data sets to understand transit times in contrasting headwater catchments
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How much complexity is warranted in a rainfall-runoff model?
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Testing and validating environmental models
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Fractal stream chemistry and its implications for contaminant transport in catchments
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Catchment-scale advection and dispersion as a mechanism for fractal scaling in stream tracer concentrations
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The role of catchment scale and landscape characteristics for runoff generation of boreal streams
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Who needs environmental monitoring?
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Moving beyond heterogeneity and process complexity: A new vision for watershed hydrology
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A review and evaluation of catchment transit time modeling
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Evaluation of mean residence time in subsurface waters using oxygen-18 fluctuations during drought conditions in the mid-Appalachians
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The role of topography on catchment-scale water residence time
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Integrating tracer experiments with modeling to assess runoff processes and water transit times
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The United Kingdom Acid Waters Monitoring Network: a review of the first 15 years and introduction to the special issue.
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Where do channels begin?
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River flow forecasting through conceptual models part I — A discussion of principles
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An investigation of the impact of afforestation on stream-water chemistry in the Loch Dee catchment, SW Scotland
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Are big basins just the sum of small catchments?
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Towards simple approaches for mean residence time estimation in ungauged basins using tracers and soil distributions
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Scaling up and out in runoff process understanding: insights from nested experimental catchment studies
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Runoff processes, stream water residence times and controlling landscape characteristics in a mesoscale catchment: An initial evaluation
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Catchment data for process conceptualization: simply not enough?
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On the extraction of channel networks from digital elevation data
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Influence of forestry, environmental change and climatic variability on the hydrology, hydrochemistry and residence times of upland catchments
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Conceptualization of runoff processes using a geographical information system and tracers in a nested mesoscale catchment
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Conceptualizing catchment processes: simply too complex?
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Crossref
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Inter-catchment comparison to assess the influence of topography and soils on catchment transit times in a geomorphic province; the Cairngorm mountains, Scotland
1 reference
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How does landscape structure influence catchment transit time across different geomorphic provinces?
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Catchment Classification and Hydrologic Similarity
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How does rainfall become runoff? A combined tracer and runoff transfer function approach
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10.1029/2008WR007496
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