A Tri-National program for estimating the link between snow resources and hydrological droughts

To evaluate how summer low flows and droughts are affected by the winter snowpack, a Tri-National effort will analyse data from three catchments: Alpbach (Prealps, central Switzerland), Gudjaretis-Tskali (Little Caucasus, central Georgia), and Kamenice (Jizera Mountains, northern Czech Republic)....

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Main Authors: M. Zappa, T. Vitvar, A. Rücker, G. Melikadze, L. Bernhard, V. David, M. Jans-Singh, N. Zhukova, M. Sanda
Format: Article
Language:English
Published: Copernicus Publications 2015-06-01
Series:Proceedings of the International Association of Hydrological Sciences
Online Access:https://www.proc-iahs.net/369/25/2015/piahs-369-25-2015.pdf
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spelling doaj-1f1f346a2fca441ea68d0dd06af3d0722020-11-25T00:20:17ZengCopernicus PublicationsProceedings of the International Association of Hydrological Sciences2199-89812199-899X2015-06-01369253010.5194/piahs-369-25-2015A Tri-National program for estimating the link between snow resources and hydrological droughtsM. Zappa0T. Vitvar1A. Rücker2G. Melikadze3L. Bernhard4V. David5M. Jans-Singh6N. Zhukova7M. Sanda8Swiss Federal Research Institute WSL, Birmensdorf, SwitzerlandCzech Technical University in Prague, Faculty of Civil, Engineering, Prague, Czech RepublicSwiss Federal Research Institute WSL, Birmensdorf, SwitzerlandTbilisi State University, Institute of Geophysics, Tbilisi, GeorgiaSwiss Federal Research Institute WSL, Birmensdorf, SwitzerlandCzech Technical University in Prague, Faculty of Civil, Engineering, Prague, Czech RepublicSwiss Federal Research Institute WSL, Birmensdorf, SwitzerlandTbilisi State University, Institute of Geophysics, Tbilisi, GeorgiaCzech Technical University in Prague, Faculty of Civil, Engineering, Prague, Czech RepublicTo evaluate how summer low flows and droughts are affected by the winter snowpack, a Tri-National effort will analyse data from three catchments: Alpbach (Prealps, central Switzerland), Gudjaretis-Tskali (Little Caucasus, central Georgia), and Kamenice (Jizera Mountains, northern Czech Republic). Two GIS-based rainfall-runoff models will simulate over 10 years of runoff in streams based on rain and snowfall measurements, and further meteorological variables. The models use information on the geographical settings of the catchments together with knowledge of the hydrological processes of runoff generation from rainfall, looking particularly at the relationship between spring snowmelt and summer droughts. These processes include snow accumulation and melt, evapotranspiration, groundwater recharge in spring that contributes to (the) summer runoff, and will be studied by means of the environmental isotopes <sup>18</sup>O and <sup>2</sup>H. Knowledge about the isotopic composition of the different water sources will allow to identify the flow paths and estimate the residence time of snow meltwater in the subsurface and its contribution to the stream. The application of the models in different nested or neighbouring catchments will explore their potential for further development and allow a better early prediction of low-flow periods in various mountainous zones across Europe. The paper presents the planned activities including a first analysis of already available dataset of environmental isotopes, discharge, snow water equivalent and modelling experiments of the (already) available datasets.https://www.proc-iahs.net/369/25/2015/piahs-369-25-2015.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Zappa
T. Vitvar
A. Rücker
G. Melikadze
L. Bernhard
V. David
M. Jans-Singh
N. Zhukova
M. Sanda
spellingShingle M. Zappa
T. Vitvar
A. Rücker
G. Melikadze
L. Bernhard
V. David
M. Jans-Singh
N. Zhukova
M. Sanda
A Tri-National program for estimating the link between snow resources and hydrological droughts
Proceedings of the International Association of Hydrological Sciences
author_facet M. Zappa
T. Vitvar
A. Rücker
G. Melikadze
L. Bernhard
V. David
M. Jans-Singh
N. Zhukova
M. Sanda
author_sort M. Zappa
title A Tri-National program for estimating the link between snow resources and hydrological droughts
title_short A Tri-National program for estimating the link between snow resources and hydrological droughts
title_full A Tri-National program for estimating the link between snow resources and hydrological droughts
title_fullStr A Tri-National program for estimating the link between snow resources and hydrological droughts
title_full_unstemmed A Tri-National program for estimating the link between snow resources and hydrological droughts
title_sort tri-national program for estimating the link between snow resources and hydrological droughts
publisher Copernicus Publications
series Proceedings of the International Association of Hydrological Sciences
issn 2199-8981
2199-899X
publishDate 2015-06-01
description To evaluate how summer low flows and droughts are affected by the winter snowpack, a Tri-National effort will analyse data from three catchments: Alpbach (Prealps, central Switzerland), Gudjaretis-Tskali (Little Caucasus, central Georgia), and Kamenice (Jizera Mountains, northern Czech Republic). Two GIS-based rainfall-runoff models will simulate over 10 years of runoff in streams based on rain and snowfall measurements, and further meteorological variables. The models use information on the geographical settings of the catchments together with knowledge of the hydrological processes of runoff generation from rainfall, looking particularly at the relationship between spring snowmelt and summer droughts. These processes include snow accumulation and melt, evapotranspiration, groundwater recharge in spring that contributes to (the) summer runoff, and will be studied by means of the environmental isotopes <sup>18</sup>O and <sup>2</sup>H. Knowledge about the isotopic composition of the different water sources will allow to identify the flow paths and estimate the residence time of snow meltwater in the subsurface and its contribution to the stream. The application of the models in different nested or neighbouring catchments will explore their potential for further development and allow a better early prediction of low-flow periods in various mountainous zones across Europe. The paper presents the planned activities including a first analysis of already available dataset of environmental isotopes, discharge, snow water equivalent and modelling experiments of the (already) available datasets.
url https://www.proc-iahs.net/369/25/2015/piahs-369-25-2015.pdf
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