Geography Reference
In-Depth Information
Gallant, A. J. E., and J. Gergis (2011), An experimental stream-
flow reconstruction for the River Murray, Water Resources
Research, 47 , 1783 - 1988, doi:10.1029/2010WR009832.
Gallo, K. P., D. Tarpley, K. Mitchell, et al. (2001), Monthly
fractional green vegetation cover associated with land
cover classes of the conterminous USA, Geophysical
Research Letters, 28 , 2089
Hydrology and Earth System Sciences, 11 (2), 695 - 701,
doi:10.5194/hess-11-695-2007.
Gerrits, A. M. J., L. Pfister, and H. H. G. Savenije (2010), Spatial
and temporal variability of canopy and forest floor inter-
ception in a beech forest, Hydrological Processes, 24 (21),
3011
3025, doi:10.1002/hyp.7712.
Gerwin, W., W. Schaaf, D. Biemelt, et al. (2009), The artificial
catchment Chicken Creek (Lusatia, Germany): a land-
scape laboratory for interdisciplinary studies of initial eco-
system development, Ecological Engineering, 35 (12),
1786 - 1796, doi:10.1016/j.ecoleng.2009.09.003.
Gessler, P. E., I. D. Moore, N. J. McKenzie, and P. J. Ryan
(1995), Soil-landscape modelling and spatial prediction
of soil attributes, International Journal of Geographical
Information Systems, 9 , 421 - 432.
Gharari, S., M. Hrachowitz, F. Fenicia, and H. H. G. Savenije
(2011), Hydrological landscape classification: investigat-
ing the performance of HAND based landscape classifica-
tions in a central European meso-scale catchment,
Hydrology and Earth System Sciences, 15 (11), 3275 - 3291,
doi:10.5194/hess-15-3275-2011.
Gingras, D., and K. Adamowski (1993), Homogeneous region
delineation based on annual flood generation mechanisms,
Hydrological Science Journal, 38 (2), 103 - 121.
Gioia, A., V. Iacobellis, S. Manfreda, and M. Fiorentino (2008),
Runoff thresholds in derived flood frequency distributions,
Hydrology and Earth System Science, 12 , 1295 - 1307,
doi:10.5194/hess-12-1295-2008.
Giosan, L., P. D. Clift, M. G. Macklin, et al. (2012), Fluvial
landscapes of the Harappan civilization, Proceedings of
the National Academy of Sciences of the United States of
America,
-
2092.
Gan, K. C., T. A. McMahon, and I. C. O ' Neill (1991), Transpos-
ition of monthly streamflow data to ungauged catchments,
Nordic Hydrology, 22 (2), 109 - 122.
Gandin, L. S. (1963), Objective Analysis of Meteorological Fields
(in Russian), Israel Program for Scientific Translations,
Jerusalem.
Gannett, H. (1912), Map of the United States showing mean
annual runoff, in Surface Water Supply of the United
States, 1911, U.S. Geological Survey, Water Supply
Papers, No. 301 - 312, Government Printing Office, Wash-
ington, DC, pt. II.
Ganora, D., P. Claps, F. Laio, and A. Viglione (2009), An
approach to estimate nonparametric flow duration curves
in ungauged basins, Water Resources Research, 45 (10), 1 - 10,
doi:10.1029/2008WR007472.
Gao, H., Q. Tang, C. R. Ferguson, E. F. Wood, and D. P.
Lettenmaier (2010), Estimating the water budget of major
US river basins via remote sensing, International Journal
of Remote Sensing, 31 (14), 3955 - 3978, doi:10.1080/
01431161.2010.483488.
Gartsman, I. N., B. A. Kazansky, and L. M. Korytny (1976),
Structural measure of river systems and its indicative char-
acters (case study systems of the Southern Minusinsk
hollow), Reports of the Institute of Geography of Siberia
and the Far East, Issue 49 ,54 - 60.
Gaume, E., V. Bain, P. Bernardara, O. Newinger, et al.
(2009), A compilation of data on European flash floods,
Journal of Hydrology, 367 (1 - 2), 70 - 78, doi:10.1016/j.
jhydrol.2008.12.028.
Gaume, E., L. Gaál, A. Viglione, et al. (2010), Bayesian MCMC
approach to regional flood frequency analyses involving
extraordinary flood events at ungauged sites, Journal of
Hydrology,
-
109 (26),
E1688 - E1694,
doi:10.1073/
pnas.1112743109.
Giri, C., Z. Zhu, and B. Reed (2005), A comparative analysis of
the Global Land Cover 2000 and MODIS land cover data
sets, Remote Sensing of Environment, 94 (1), 123 - 132,
doi:10.1016/j.rse.2004.09.005.
Gitau, M. W., and I. Chaubey (2010), Regionalization of SWAT
model parameters for use in ungauged watersheds, Water,
2 (4), 849 - 871, doi:10.3390/w2040849.
Gleeson, T., and A. H. Manning (2008), Regional groundwater
flow in mountainous terrain: three-dimensional simula-
tions of topographic and hydrogeologic controls, Water
Resources
394 (1 - 2),
101 - 117,
doi:10.1016/j.
jhydrol.2010.01.008.
Gebert, W. A., D. J. Graczyk, and W. R. Krug (1987), Average
annual runoff in the United States, 1951 - 80, Hydrologic
Investigations Atlas, HA-70, U.S. Geological Survey,
Reston, VA.
Gelfan, A. N. (2006), Physically based model of heat and water
transfer in frozen soil and its parametrization by basic soil data,
in M. Sivapalan, T. Wagener, S. Uhlenbrook, et al.(Eds.),
Predictions in Ungauged Basins: Promises and Progress,
Wallingford: IAHS Publication 303, pp. 293 - 304.
Germann, U., G. Galli, M. Boscacci, and M. Bolliger (2006),
Radar precipitation measurement in a mountainous region,
Quarterly Journal of the Royal Meteorological Society,
132 (618), 1669 - 1692, doi:10.1256/qj.05.190.
Gerrits, A. M. J., H. H. G. Savenije, L. Hoffmann, and L. Pfister
(2007), New technique to measure forest floor intercep-
tion: an application in a beech forest
Research,
44 (10),
1 - 16,
doi:10.1029/
2008WR006848.
Glenn, E. P., A. R. Huete, P. L. Nagler, K. K. Hirschboeck, and
P. Brown (2007), Integrating remote sensing and ground
methods to estimate evapotranspiration, Critical Reviews
in Plant
Sciences,
26 (3),
139 - 168,
doi:10.1080/
07352680701402503.
Glenn, E. P., P. L. Nagler, and A. R. Huete (2010), Vegetation
index methods for estimating evapotranspiration by remote
sensing,
Surveys
in Geophysics,
31 (6),
531 - 555,
doi:10.1007/s10712 - 010 - 9102 - 2.
Global Soil Data Task Group (2000), Global Gridded
Surfaces of Selected Soil Characteristics (IGBP-DIS).
Data set. Available online from Oak Ridge National
in Luxembourg,
Search WWH ::




Custom Search