Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration

Study region: The hydropower reservoir of Gigerwald is located in the alpine valley Calfeisental in eastern Switzerland. The lake is fed by runoff from rain, snow melt and ice melt from a few small glaciers, as well as by water collected in a neighbouring valley. Study focus: Water resources in the...

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Main Authors: Simon Etter, Nans Addor, Matthias Huss, David Finger
Format: Article
Language:English
Published: Elsevier 2017-10-01
Series:Journal of Hydrology: Regional Studies
Online Access:http://www.sciencedirect.com/science/article/pii/S2214581817300447
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spelling doaj-985403c403e64d65853009a145b36c0a2020-11-25T01:08:50ZengElsevierJournal of Hydrology: Regional Studies2214-58182017-10-0113C22223910.1016/j.ejrh.2017.08.005Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibrationSimon Etter0Nans Addor1Matthias Huss2David Finger3Department of Geography, University of Zurich, Winterthurerstrasse 190, CH-8057 Zürich, SwitzerlandDepartment of Geography, University of Zurich, Winterthurerstrasse 190, CH-8057 Zürich, SwitzerlandLaboratory of Hydraulics, Hydrology and Glaciology (VAW), ETH Zürich, Zürich, SwitzerlandSchool of Science and Engineering, Reykjavik University, Reykjavik, IcelandStudy region: The hydropower reservoir of Gigerwald is located in the alpine valley Calfeisental in eastern Switzerland. The lake is fed by runoff from rain, snow melt and ice melt from a few small glaciers, as well as by water collected in a neighbouring valley. Study focus: Water resources in the Alps are projected to undergo substantial changes in the coming decades. It is therefore essential to explore climate change impacts in catchments with hydropower facilities. We present a multi-dataset calibration (MDC) using discharge, snowcover data and glacier mass balances for an ensemble of hydrological simulations performed using the Hydrologiska Byråns Vattenbalansavdelning (HBV)-light model. The objective is to predict the future changes in hydrological processes in the catchment and to assess the benefits of a MDC compared to a traditional calibration to discharge only. New hydrological insights for the region: We found that the annual runoff dynamics will undergo significant changes with more runoff in winter and less in summer by shifting parts of the summer melt runoff to an earlier peak in spring. We furthermore found that the MDC reduces the uncertainty in the projections of glacial runoff and leads to a different distribution of runoff throughout the year than if calibrated to discharge only. We therefore argue that MDC leads to more consistent model results by representing the runoff generation processes more realistically.http://www.sciencedirect.com/science/article/pii/S2214581817300447
collection DOAJ
language English
format Article
sources DOAJ
author Simon Etter
Nans Addor
Matthias Huss
David Finger
spellingShingle Simon Etter
Nans Addor
Matthias Huss
David Finger
Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration
Journal of Hydrology: Regional Studies
author_facet Simon Etter
Nans Addor
Matthias Huss
David Finger
author_sort Simon Etter
title Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration
title_short Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration
title_full Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration
title_fullStr Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration
title_full_unstemmed Climate change impacts on future snow, ice and rain runoff in a Swiss mountain catchment using multi-dataset calibration
title_sort climate change impacts on future snow, ice and rain runoff in a swiss mountain catchment using multi-dataset calibration
publisher Elsevier
series Journal of Hydrology: Regional Studies
issn 2214-5818
publishDate 2017-10-01
description Study region: The hydropower reservoir of Gigerwald is located in the alpine valley Calfeisental in eastern Switzerland. The lake is fed by runoff from rain, snow melt and ice melt from a few small glaciers, as well as by water collected in a neighbouring valley. Study focus: Water resources in the Alps are projected to undergo substantial changes in the coming decades. It is therefore essential to explore climate change impacts in catchments with hydropower facilities. We present a multi-dataset calibration (MDC) using discharge, snowcover data and glacier mass balances for an ensemble of hydrological simulations performed using the Hydrologiska Byråns Vattenbalansavdelning (HBV)-light model. The objective is to predict the future changes in hydrological processes in the catchment and to assess the benefits of a MDC compared to a traditional calibration to discharge only. New hydrological insights for the region: We found that the annual runoff dynamics will undergo significant changes with more runoff in winter and less in summer by shifting parts of the summer melt runoff to an earlier peak in spring. We furthermore found that the MDC reduces the uncertainty in the projections of glacial runoff and leads to a different distribution of runoff throughout the year than if calibrated to discharge only. We therefore argue that MDC leads to more consistent model results by representing the runoff generation processes more realistically.
url http://www.sciencedirect.com/science/article/pii/S2214581817300447
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AT nansaddor climatechangeimpactsonfuturesnowiceandrainrunoffinaswissmountaincatchmentusingmultidatasetcalibration
AT matthiashuss climatechangeimpactsonfuturesnowiceandrainrunoffinaswissmountaincatchmentusingmultidatasetcalibration
AT davidfinger climatechangeimpactsonfuturesnowiceandrainrunoffinaswissmountaincatchmentusingmultidatasetcalibration
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