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Vogel, R. M., N. C. Matalas, J. F. England, and A. Castellarin
(2007a), An assessment of exceedance probabilities of
envelope curves, Water Resources Research, 43 , W07403,
doi:10.1029/2006WR005586.
Vogel, R. M., J. Sieber, S. A. Archfield, et al. (2007b), Relations
among storage, yield, and instream flow, Water Resources
Research, 43 (5), 1
Walker, J. P., G. R. Willgoose, and J. D. Kalma (2001), One-
dimensional soil moisture prole retrieval by assimilation
of near-surface observations: a comparison of retrieval
algorithms, Advances in Water Resources, 24 , 631 - 650.
Walther, J., R. Merz, G. Laaha, and U. Büttner (2011), Regional-
ising floods in Saxonia (in German, Regionalisierung von
Hochwasserabflüssen in Sachsen), in G. Blöschl and
R. Merz (Eds.), Hydrologie und Wasserwirtschaft: von
der Theorie zur Praxis, Forum für Hydrologie und Was-
serbewirtschaftung, Heft 30.11, pp. 29 - 35.
Wandle, S. W. (1977), Estimating the Magnitude and Frequency of
Flood on Natural Streams in Massachusetts, U.S. Geological
Survey Water Resources Investigations Report 77 - 39.
Wang, D., and X. Cai (2009), Detecting human interferences
to low flows through base flow recession analysis,
Water Resources Research, 45 , W07426, doi:10.1029/
2009WR007819.
Wang, D., and L. Wu (2012), Similarity between runoff coeffi-
cient and perennial stream density in the Budyko frame-
work, Hydrology and Earth System Sciences, 9 (6),
7571 - 7589, doi:10.5194/hessd-9-7571-2012.
Wang, T., E. Istanbulluoglu, J. Lenters, and D. Scott (2009), On
the role of groundwater and soil texture in the regional
water balance: an investigation of the Nebraska Sand Hills,
USA, Water Resources Research,
12, doi:10.1029/2006WR005226.
Vörösmarty, C. J., P. B. McIntryre, M. O. Gessner, et al. (2010),
Global threats to human water security and river
biodiversity, Nature, 467 (7315), 555 - 561, doi:10.1038/
nature09440.
Vrugt, J. A., H. V. Gupta, L. A. Bastidas, W. Bouten, and
S. Sorooshian (2003), Effective and efficient algorithm
for multiobjective optimization of hydrologic models,
Water Resources Research, 39 (8), 1 - 19, doi:10.1029/
2002WR001746.
Wagener, T. and A. Montanari (2011), Convergence of
approaches toward reducing uncertainty in predictions in
ungauged basins, Water Resources Research, 47 (6),
W06301, doi:10.1029/2010WR009469.
Wagener, T., and H. S. Wheater (2006), Parameter estimation and
regionalization for continuous rainfall-runoff models
including uncertainty, Journal of Hydrology, 320 (1 - 2),
132 - 154, doi:10.1016/j.jhydrol.2005.07.015.
Wagener, T., D. P. Boyle, M. J. Lees, et al. (2001), A framework
for development and application of hydrological models,
Hydrology and Earth System Sciences, 5 (1), 13 - 26,
doi:10.5194/hess-5-13-2001.
Wagener, T., H. S. Wheater, and H. V. Gupta (2004), Rainfall-
runoff Modelling in Gauged and Ungauged Catchments,
London: Imperial College Press.
Wagener, T., M. Sivapalan, and B. McGlynn (2005), Catchment
classification and catchment services: towards a new
paradigm for catchment hydrology driven by societal needs,
in M. G. Anderson (Ed.), Encyclopedia of Hydrological
Sciences, Chichester: John Wiley & Sons, pp. 1 - 17.
Wagener, T., M. Sivapalan, P. A. Troch, and R. A. Woods
(2007), Catchment classification and hydrologic similarity,
Geography Compass, 1 /4, 901 - 931, 10.1111/j.1749-
8198.2007.00039.x.
Wagener, T., M. Sivapalan, P. A. Troch, et al. (2010), The future
of hydrology: an evolving science for a changing world,
Water Resources Research, 46 (5), W05301, doi:10.1029/
2009WR008906.
Wagner, W., K. Scipal, C. Pathe, et al. (2003), Evaluation of the
agreement between the first global remotely sensed soil
moisture data with model and precipitation data, Journal
of Geophysical Research, 108 (D19), 4611, doi:10.1029/
2003JD003663.
Wagner, W., G. Blöschl, P. Pampaloni, et al. (2007), Opera-
tional readiness of microwave remote sensing of soil mois-
ture for hydrologic applications, Nordic Hydrology, 38 (1),
1 - 20.
Wagner, W., C. Pathe, M. Doubkova, et al. (2008), Temporal
stability of soil moisture and radar backscatter observed by
the Advanced Synthetic Aperture Radar (ASAR), Sensors,
8 (2), 1174 - 1197.
-
45 , W10413,
doi:10.1029/2009WR007733.
Ward, J. H., Jr. (1963), Hierarchical grouping to optimize an
objective function, Journal of
the American Statistical
244.
Ward, R. C., and M. Robinson (1990), Principles of Hydrology,
3rd edition, Maidenhead: McGraw-Hill.
Warrick, A. W., D. O. Lomen, and A. Islas (1990), An analytical
solution to Richards ' equation for a draining soil profile,
Water Resources Research, 26 (2), 253 - 258, doi:10.1029/
WR026i002p00253.
Watson, T. A., F. A. Barnett, S. T. Gray, and G. A. Tootle (2009),
Reconstructed streamflows for the headwaters of the Wind
River, Wyoming, United States, Journal of the American
Water Resources Association, 45 (1), 224 - 236.
Waylen, P. R., and M. Woo (1982), Prediction of annual floods
generated by mixed processes, Water Resources Research,
18 , 1283 - 1286.
Wehren, B., B. Schädler, and R. Weingartner (2010), Human
interventions, in U. Bundi, et al. (Eds.), Alpine Waters,
The Handbook of Environmental Chemistry, Volume 6,
Heidelberg: Springer Verlag, pp. 71 - 92.
Weingartner, R. (1999), Regionalhydrologische Analysen: Grun-
dlagen und Anwendungen, Beiträge zur Hydrologie der
Schweiz, Nr. 37, Bern.
Weingartner, R., and H. Aschwanden (1992), Discharge regime:
the basis for the estimation of average flows, Hydrological
Atlas of Switzerland, plate 5.2, Bern.
Weingartner, R., P. Hänggi, and B. Schädler (2012), Climate change
and hydropower production in Switzerland, International
Water Power and Dam Construction, 64 (4), 38
Association, 48 , 236
-
43.
Westerberg, I. K., J. L. Guerrero, P. M. Younger, et al. (2011),
Calibration of hydrological models using flow-duration
-
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