Evaluation of sources of uncertainty in projected hydrological changes under climate change in 12 large-scale river basins
Creators
- 1. Potsdam Institute for Climate Impact Research
- 2. University of Kassel
- 3. Vrije Universiteit Brussel
- 4. UNESCO-IHE Institute for Water Education
- 5. Swedish Meteorological and Hydrological Institute
- 6. Leibniz University of Hanover
- 7. University of Ottawa
- 8. China Meteorological Administration
- 9. University of Sydney
Description
This paper aims to evaluate sources of uncertainty in projected hydrological changes under climate change in twelve large-scale river basins worldwide, considering the mean flow and the two runoff quantiles Q10 (high flow), and Q90 (low flow). First, changes in annual low flow, annual high flow and mean annual runoff were evaluated using simulation results from a multi-hydrological-model (nine hydrological models, HMs) and a multi-scenario approach (four Representative Concentration Pathways, RCPs, five CMIP5 General Circulation Models, GCMs). Then, three major sources of uncertainty (from GCMs, RCPs and HMs) were analyzed using the ANOVA method, which allows for decomposing variances and indicating the main sources of uncertainty along the GCM-RCP-HM model chain. Robust changes in at least one runoff quantile or the mean flow, meaning a high or moderate agreement of GCMs and HMs, were found for five river basins: the Lena, Tagus, Rhine, Ganges, and Mackenzie. The analysis of uncertainties showed that in general the largest share of uncertainty is related to GCMs, followed by RCPs, and the smallest to HMs. The hydrological models are the lowest contributors of uncertainty for Q10 and mean flow, but their share is more significant for Q90.
Publication Details
Journal article
Journal:
Climatic Change
Publisher:
Springer Science and Business Media LLC
ISSN:
01650009
Volume:
141
Pages:
419-433
Persistent Identifiers
DOI
10.1007/s10584-016-1794-y
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MAGID
2531390983
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