Articles | Volume 21, issue 9
https://doi.org/10.5194/hess-21-4879-2017
https://doi.org/10.5194/hess-21-4879-2017
Cutting-edge case studies
 | 
28 Sep 2017
Cutting-edge case studies |  | 28 Sep 2017

Providing a non-deterministic representation of spatial variability of precipitation in the Everest region

Judith Eeckman, Pierre Chevallier, Aaron Boone, Luc Neppel, Anneke De Rouw, Francois Delclaux, and Devesh Koirala

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Cited articles

Alpert, P.: Mesoscale indexing of the distribution of orographic precipitation over high mountains, J. Clim. Appl. Meteorol., 25, 532–545, 1986.
Andermann, C., Bonnet, S., and Gloaguen, R.: Evaluation of precipitation data sets along the Himalayan front, Geochem. Geophy. Geosy., 5, 127–132, https://doi.org/10.1029/2011GC003513, 2011.
Andermann, C., Longuevergne, L., Bonnet, S., Crave, A., Davy, P., and Gloaguen, R.: Impact of transient groundwater storage on the discharge of Himalayan rivers, Nat. Geosci., 5, 127–132, 2012.
Anders, A. M., Roe, G. H., Hallet, B., Montgomery, D. R., Finnegan, N. J., and Putkonen, J.: Spatial patterns of precipitation and topography in the Himalaya, Geological Society of America Special Papers, 398, 39–53, 2006.
Arino, O., Perez, J. J. R., Kalogirou, V., Bontemps, S., Defourny, P., and Van Bogaert, E.: Global land cover map for 2009 (GlobCover 2009), https://doi.org/10.1594/PANGAEA.787668, 2012.
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The central part of the Himalayan Range presents tremendous heterogeneity in terms of topography and climatology, but the representation of hydro-climatic processes for Himalayan catchments is limited due to a lack of knowledge in such poorly instrumented environments. The proposed approach is to characterize the effect of altitude on precipitation by considering ensembles of acceptable altitudinal factors. Ensembles of acceptable values for the components of the water cycle are then provided.