globalchange  > 气候变化事实与影响
DOI: 10.5194/hess-19-913-2015
Scopus记录号: 2-s2.0-84923079860
论文题名:
Climate change impacts on the seasonality and generation processes of floods – Projections and uncertainties for catchments with mixed snowmelt/rainfall regimes
作者: Vormoor K; , Lawrence D; , Heistermann M; , Bronstert A
刊名: Hydrology and Earth System Sciences
ISSN: 10275606
出版年: 2015
卷: 19, 期:2
起始页码: 913
结束页码: 931
语种: 英语
Scopus关键词: Catchments ; Climate models ; Floods ; Hydrology ; Rain ; Risk assessment ; Risk perception ; Runoff ; Snow melting systems ; Uncertainty analysis ; Climate change impact ; Design flood estimation ; Flood risk assessments ; Hydro power production ; Hydrological parameters ; Hydrometeorological conditions ; Increasing temperatures ; Regional climate models ; Climate change ; catchment ; climate change ; climate modeling ; flood ; hydroelectric power ; hydrological modeling ; hydrometeorology ; melting ; rainfall ; regional climate ; risk assessment ; seasonal variation ; seasonality ; uncertainty analysis ; Scandinavia
英文摘要: Climate change is likely to impact the seasonality and generation processes of floods in the Nordic countries, which has direct implications for flood risk assessment, design flood estimation, and hydropower production management. Using a multi-model/multi-parameter approach to simulate daily discharge for a reference (1961-1990) and a future (2071-2099) period, we analysed the projected changes in flood seasonality and generation processes in six catchments with mixed snowmelt/rainfall regimes under the current climate in Norway. The multi-model/multi-parameter ensemble consists of (i) eight combinations of global and regional climate models, (ii) two methods for adjusting the climate model output to the catchment scale, and (iii) one conceptual hydrological model with 25 calibrated parameter sets. Results indicate that autumn/winter events become more frequent in all catchments considered, which leads to an intensification of the current autumn/winter flood regime for the coastal catchments, a reduction of the dominance of spring/summer flood regimes in a high-mountain catchment, and a possible systematic shift in the current flood regimes from spring/summer to autumn/winter in the two catchments located in northern and south-eastern Norway. The changes in flood regimes result from increasing event magnitudes or frequencies, or a combination of both during autumn and winter. Changes towards more dominant autumn/winter events correspond to an increasing relevance of rainfall as a flood generating process (FGP) which is most pronounced in those catchments with the largest shifts in flood seasonality. Here, rainfall replaces snowmelt as the dominant FGP primarily due to increasing temperature. We further analysed the ensemble components in contributing to overall uncertainty in the projected changes and found that the climate projections and the methods for downscaling or bias correction tend to be the largest contributors. The relative role of hydrological parameter uncertainty, however, is highest for those catchments showing the largest changes in flood seasonality, which confirms the lack of robustness in hydrological model parameterization for simulations under transient hydrometeorological conditions. � Author(s) 2015.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/78601
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作者单位: Institute of Earth and Environmental Science, University of Potsdam, Postdam, Germany; Norwegian Water Resources and Energy Direc., Oslo, Norway

Recommended Citation:
Vormoor K,, Lawrence D,, Heistermann M,et al. Climate change impacts on the seasonality and generation processes of floods – Projections and uncertainties for catchments with mixed snowmelt/rainfall regimes[J]. Hydrology and Earth System Sciences,2015-01-01,19(2)
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