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Title: Multi-decadal river flow variations in France

Journal Article · · Hydrology and Earth System Sciences (Online)
 [1];  [2]
  1. Centre Européen de Recherche et de Formation Avancée en Calcul Scientifique (CERFACS), Toulouse (France)
  2. Centre National de la Recherche Scientifique (CNRS), Paris (France).

In this article, multi-decadal variations in the French hydroclimate are investigated, with a specific focus on river flows. Based on long observed series, it is shown that river flows in France generally exhibit large multi-decadal variations in the instrumental period (defined in this study as the period from the late 19th century to the present), especially in spring. Differences of means between 21 yr periods of the 20th century as large as 40% are indeed found for many gauging stations. Multi-decadal spring river flow variations are associated with variations in spring precipitation and temperature. These multi-decadal variations in precipitation are themselves found to be driven by large-scale atmospheric circulation, more precisely by a multi-decadal oscillation in a sea level pressure dipole between western Europe and the eastern Atlantic. It is suggested that the Atlantic Multidecadal Variability, the main mode of multi-decadal variability in the North Atlantic–Europe sector, controls those variations in large-scale circulation and is therefore the main ultimate driver of multi-decadal variations in spring river flows. Potential multi-decadal variations in river flows in other seasons, and in particular summer, are also noted. As they are not associated with significant surface climate anomalies (i.e. temperature, precipitation) in summer, other mechanisms are investigated based on hydrological simulations. The impact of climate variations in spring on summer soil moisture, and the impact of soil moisture in summer on the runoff-to-precipitation ratio, could potentially play a role in multi-decadal summer river flow variations. The large amplitude of the multi-decadal variations in French river flows suggests that internal variability may play a very important role in the evolution of river flows during the next decades, potentially temporarily limiting, reversing or seriously aggravating the long-term impacts of anthropogenic climate change.

Research Organization:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States). Oak Ridge Leadership Computing Facility (OLCF)
Sponsoring Organization:
USDOE Office of Science (SC)
OSTI ID:
1565252
Journal Information:
Hydrology and Earth System Sciences (Online), Vol. 18, Issue 2; ISSN 1607-7938
Publisher:
European Geosciences Union (EGU)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 29 works
Citation information provided by
Web of Science

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Cited By (11)

Multidecadal climate variability over northern France during the past 500 years and its relation to large-scale atmospheric circulation: MULTIDECADAL CLIMATE VARIABILITY OVER NORTHERN FRANCE journal February 2016
On the Use of Hydrological Models and Satellite Data to Study the Water Budget of River Basins Affected by Human Activities: Examples from the Garonne Basin of France journal February 2016
Assessing and managing the risks of hypoxia in transitional waters: a case study in the tidal Garonne River (South-West France) journal September 2016
Effect of the North Atlantic Thermohaline Circulation on Changes in Climatic Conditions and River Flow in Poland journal August 2019
Recent trends in climate variability at the local scale using 40 years of observations: the case of the Paris region of France journal January 2019
Probabilistic precipitation and temperature downscaling of the Twentieth Century Reanalysis over France journal January 2016
Building long-term and high spatio-temporal resolution precipitation and air temperature reanalyses by mixing local observations and global atmospheric reanalyses: the ANATEM model journal January 2015
Evolution of Ossoue Glacier (French Pyrenees) since the end of the Little Ice Age journal January 2015
On the Use of Hydrological Models and Satellite Data to Study the Water Budget of River Basins Affected by Human Activities: Examples from the Garonne Basin of France book January 2016
Probabilistic precipitation and temperature downscaling of the Twentieth Century Reanalysis over France. text January 2015
Evolution of Ossoue Glacier (French Pyrenees) since the end of the Little Ice Age journal April 2015

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