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Climate Dynamics · 2026 · Vol. 64 · Issue 5 · Springer
In July 2021 record-breaking extreme rainfall occurred in Western Europe causing huge damage and loss of life. The event was associated with a persistent cut-off low pressure system. We assess the influence of the large-scale dynamics on the extreme rainfall, evaluating the sensitivity of the rainfall to the specific circulation pattern of this event. Using multiple lines of evidence we show small changes in the position and m...
Climate Dynamics · 2024 · Vol. 62 · Issue 6 · Springer
The increase in computational resources has enabled the emergence of multi-model ensembles of convection-permitting regional climate model (CPRCM) simulations at very high horizontal resolutions. An example is the CORDEX Flagship Pilot Study on “Convective phenomena at high resolution over Europe and the Mediterranean”, a set of kilometre-scale simulations over an extended Alpine domain. This first-of-its-kind multi-model ense...
Climatic Change · 2023 · Vol. 176 · Issue 7 · Springer
In July 2021 extreme rainfall across Western Europe caused severe flooding and substantial impacts, including over 200 fatalities and extensive infrastructure damage within Germany and the Benelux countries. After the event, a hydrological assessment and a probabilistic event attribution analysis of rainfall data were initiated and complemented by discussing the vulnerability and exposure context. The global mean surface tempe...
Climate Dynamics · 2023 · Vol. 60 · Issue 9-10 · Springer
The issue of the added value (AV) of high resolution regional climate models is complex and still strongly debated. Here, we approach AV in a perfect model framework within a 16-member single model initial condition ensemble with the regional climate model RACMO2 embedded in the global climate model EC-Earth2.3. In addition, we also used an ensemble produced by a pseudo global warming (PGW) approach. Results for winter tempera...
Climate Dynamics · 2022 · Vol. 59 · Issue 9-10 · Springer
Regional climate projections indicate that European summer precipitation may change considerably in the future. Southern Europe can expect substantial drying while Northern Europe could actually become wetter. Model spread and internal variability in these projections are large, however, and unravelling the processes that underlie the changes is essential to get more confidence in these projections. Large-scale circulation cha...
Current Climate Change Reports · 2022 · Vol. 8 · Issue 1 · Springer
Purpose of Review: Review our current understanding of how precipitation is related to its thermodynamic environment, i.e., the water vapor and temperature in the surroundings, and implications for changes in extremes in a warmer climate. Recent Findings: Multiple research threads have i) sought empirical relationships that govern onset of strong convective precipitation, or that might identify how precipitation extremes scale...
Climate Dynamics · 2021 · Vol. 57 · Issue 1-2 · Springer
Here we present the first multi-model ensemble of regional climate simulations at kilometer-scale horizontal grid spacing over a decade long period. A total of 23 simulations run with a horizontal grid spacing of $$\sim $$ ∼ 3 km, driven by ERA-Interim reanalysis, and performed by 22 European research groups are analysed. Six different regional climate models (RCMs) are represented in the ensemble. The simulations are compared...
Climate Dynamics · 2020 · Vol. 54 · Issue 11-12 · Springer
We investigate the global distribution of hourly precipitation and its connections with the El Niño–Southern Oscillation (ENSO) using both satellite precipitation estimates and the global sub-daily rainfall gauge dataset. Despite limited moisture availability over continental surfaces, we find that the highest mean and extreme hourly precipitation intensity (HPI) values are mainly located over continents rather than over ocean...
International Journal of Climatology · 2018 · Vol. 38 · Issue 12 · Wiley
In recent years, numerous studies have investigated the relationship of extreme precipitation intensities with temperature derived from a binning method using present‐day weather data. The aim of this approach is that these dependencies, or so‐called apparent scaling rates, provide insights on how precipitation extremes could evolve in the future climate. In a recent paper, Bao et al. showed that there is a large discrepancy b...