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In-Depth Information
Shao, X. J., H. Wang, and Z. Y. Wang (2003), Interbasin
transfer projects and their implications: a China case
study, International Journal of River Basin Manage-
ment, 1 (1), 5 - 14.
Shook, K., and J. Pomeroy (2011), Synthesis of incoming short-
wave radiation for hydrological simulation, Hydrology
Research, 42 (6), 433, doi:10.2166/nh.2011.074.
Shu, C., and D. H. Burn (2004a), Homogeneous pooling
group delineation for flood frequency analysis using a
fuzzy expert system with genetic enhancement, Journal
of Hydrology,
Sivapalan, M. (2005), Pattern, process and function: elements of a
new unified hydrologic theory at the catchment scale,
in M. G. Anderson (Ed.), Encyclopaedia of Hydrologic
Sciences, Volume 1, Part 1, Chapter 13, pp. 193 - 219,
Hoboken, NJ: John Wiley.
Sivapalan, M. (2009), The secret to
'
doing better hydrological
: change the question! Hydrological Processes, 23 ,
1391 - 1396, doi:10.1002/hyp.7242.
Sivapalan, M., and G. Blöschl (1998), Transformation of point
rainfall to areal rainfall: intensity - duration - frequency
curves, Journal of Hydrology, 204 , 150 - 167.
Sivapalan, M., K. Beven, and E. F. Wood (1987), On hydrologic
similarity: 2. A scaled model of storm runoff production,
Water
science
'
291 (1 - 2),
132 - 149,
doi:10.1016/j.
jhydrol.2003.12.011.
Shu, C., and D. H. Burn (2004b), Artificial neural network
ensembles and their application in pooled flood frequency
analysis, Water Resources Research, 40 (9), W09301,
doi:10.1029/2003WR002816.
Shu, C., and T. B. M. J. Ouarda (2007), Flood frequency
analysis at ungauged sites using artificial neural networks
in canonical correlation analysis physiographic space,
Water Resources Research, 43 , W07438, doi:10.1029/
2006WR005142.
Shu, C., and T. B. M. J. Ouarda (2008), Regional flood frequency
analysis at ungauged sites using the adaptive neuro-fuzzy
inference system, Journal of Hydrology, 349 (1 - 2), 31 - 43,
doi:10.1016/j.jhydrol.2007.10.050.
Shu, C., and T. B. M. J. Ouarda (2012), Improved methods for
daily streamflow estimates at ungauged sites, Water
Resources
Resources
Research,
23 (12),
2266 - 2278,
doi:10.1029/WR023i012p02266.
Sivapalan, M., E. F. Wood, and J. Beven (1990), On hydrologic
similarity. 3: A dimensionless flood frequency model
using a generalized geomorphologic unit hydrograph and
partial area runoff generation, Water Resources Research,
26 (1), 43 - 58.
Sivapalan, M., J. K. Ruprecht, and N. R. Viney (1996), Water and
salt balance modelling to predict the effects of land-use
changes in forested catchments, I. Small catchment water
balance model, Hydrological Processes, 10 , 393 - 411.
Sivapalan, M., C. Jothityangkoon, and M. Menabde (2002), Lin-
earity and nonlinearity of basin response as a function of
scale: discussion of alternative definitions, Water Resources
Research, 38 (2), 1 - 5, doi:10.1029/2001WR000482.
Sivapalan, M., G. Blöschl, L. Zhang, and R. Vertessy (2003a),
Downward
Research,
48 , W02523,
doi:10.1029/
2011WR011501.
Shun, T., and C. J. Duffy (1999), Low-frequency oscillations in
precipitation, temperature, and runoff on a west facing
mountain front: a hydrogeologic interpretation, Water
Resources Research,
approach
to
hydrological
prediction,
Hydrological Processes, 17 , 2101
-
2111, doi:10.1002/
hyp.1425.
Sivapalan, M., K. Takeuchi, S. W. Franks, et al. (2003b), IAHS
Decade on Predictions in Ungauged Basins (PUB), 2003 -
2012: shaping an exciting future for the hydrological sci-
ences, Hydrological Sciences Journal, 48 (6), 857 - 880.
Sivapalan, M., G. Blöschl, R. Merz, and D. Gutknecht (2005),
Linking flood frequency to long-term water balance:
incorporating effects of seasonality, Water Resources
Research, 41 (6), 1 - 17, doi:10.1029/2004WR003439.
Sivapalan, M., S. E. Thompson, C. J. Harman, N. B. Basu, and P.
Kumar (2011a), Water cycle dynamics in a changing
environment: improving predictability through synthesis,
Water Resources Research, 47 , W00J01, doi:10.1029/
2011WR011377.
Sivapalan, M., M. A. Yaeger, C. J. Harman, Xiangyu Xu, and P. A.
Troch (2011b), Functional model of water balance variabil-
ity at the catchment scale. 1: Evidence of hydrologic simi-
larity and space-time symmetry, Water Resources Research,
47 , W02522, doi:10.1029/2010WR009568.
Sivapalan, M., H. H. G. Savenije, and G. Blöschl (2012), Socio-
hydrology: a new science of people and water, Hydrological
Processess, 26 (8), 1270 - 1276, doi:10.1002/hyp.8426.
Skøien, J. O., and G. Blöschl (2006a), Catchments as space-time
filters: a joint spatio-temporal geostatistical analysis of
runoff and precipitation, Hydrology and Earth System
Sciences, 10 , 645 - 662.
35 (1),
191 - 201,
doi:10.1029/
98WR02818.
Sikorska, A. E., A. Scheidegger, K. Banasik, and J. Rieckermann
(2012), Bayesian uncertainty assessment of flood predic-
tions in ungauged urban basins for conceptual rainfall-
runoff models, Hydrology and Earth System Sciences,
16 , 1221 - 1236.
Simmons, A., S. Uppala, D. Dee, and S. Kobayashi (2007), ERA-
Interim: new ECMWF reanalysis products from 1989
onwards, ECMWF Newsletter, 110 ,25 - 35.
Singh, V. P., and D. K. Frevert (2005), Watershed Models, Boca
Raton, FL: CRC Press.
Sivandran, G. (2002), Effect of rising water tables and climate
change on annual and monthly flood frequencies, B.Eng.
thesis, Centre for Water Resources, University of Western
Australia, Crawley, Australia.
Sivapalan, M. (1997), Computer Models of Watershed Hydrol-
ogy (Book review), Catena, 29 (1), 88 - 90.
Sivapalan, M. (2003a), Process complexity at hillslope scale,
process simplicity at the watershed scale: is there a con-
nection? Hydrological Processes, 17 (5), 1037 - 1041,
doi:10.1002/hyp.5109.
Sivapalan, M. (2003b), Prediction of ungauged basins: a grand
challenge for theoretical hydrology, Hydrological Pro-
cesses, 17 (15), 3163 - 3170.
 
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