A long record of European windstorm losses and its comparison to standard climate indices
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Published:2023-08-24
Issue:8
Volume:23
Page:2841-2856
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ISSN:1684-9981
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Container-title:Natural Hazards and Earth System Sciences
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language:en
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Short-container-title:Nat. Hazards Earth Syst. Sci.
Abstract
Abstract. Traditional insurance has both a great exposure to decadal variations in
European storm activity and the ability to adjust its business strategy
over these timescales. Hence, the recent development of skilful predictions
of multiannual mean European winter climate seems a very welcome addition to
the long list of ways that researchers have improved management of windstorm
risk. Yet companies do not use these forecasts of mean winter climate to
adjust their view of risk. The main reason is the lack of a long, reliable
record of losses to understand how forecasted time-mean circulation
anomalies relate to the damage from a few, intense storms. This study fills
that gap with a European windstorm loss record from 1950 to 2022, based on
ERA5 peak near-surface winds per event which were converted to losses using
an established damage function. The resulting dataset successfully
identifies major storms over the past 70 years and simulates the
multidecadal variations from low values in the 1960s up to high levels in
the 1980s and 1990s then down to the 2010s. However, it underestimated the
steepness of the observed loss decline from the stormy end of the 20th
century to the lull over the past 20 years. This was caused by a quite flat
trend in ERA5 extreme winds over the period, in contrast to the significant
decline in observed peak gusts. Imposing these gust trends on ERA5 peak
winds reconciled modelled losses with industry experience over the past few
decades. Indices of European winter climate used in long-range forecasting were
compared to the new modelled loss dataset. They had correlations of around
0.4 at interannual timescales, rising to about 0.7 for decadal and longer
variations. Notably, the climate indices have a similar multidecadal trend
as ERA5 extreme winds in modern times, including a less steep decline than
found in observed gusts and losses. Further investigation of the modern-day
divergence between climate indices and losses may help connect decadal
forecasting to insurance.
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences
Reference67 articles.
1. Årthun, M., Eldevik, T., Viste, E., Drange, H., Furevik, T., Johnson, H.
L., and Keenlyside, N. S.: Skillful prediction of northern climate provided
by the ocean, Nat. Commun., 8, 15875, https://doi.org/10.1038/ncomms15875,
2017. 2. Athanasiadis, P. J., Yeager, S., Kwon, Y.-O., Bellucci, A., Smith, D. W.,
and Tibaldi, S.: Decadal predictability of North Atlantic blocking and the
NAO, npj Clim. Atmos. Sci., 3, 20,
https://doi.org/10.1038/s41612-020-0120-6, 2020. 3. Barnston, A. G. and Livezey, R. E.: Classification, seasonality and
persistence of low-frequency atmospheric circulation patterns, Mon. Weather
Rev., 115, 1083–1126,
https://doi.org/10.1175/1520-0493(1987)115<1083:CSAPOL>2.0.CO;2,
1987. 4. Barredo, J. I.: No upward trend in normalised windstorm losses in Europe: 1970–2008, Nat. Hazards Earth Syst. Sci., 10, 97–104, https://doi.org/10.5194/nhess-10-97-2010, 2010. 5. Bell, B., Hersbach, H., Simmons, A., Berrisford, P., Dahlgren, P., Horányi, A., Muñoz-Sabater, J., Nicolas, J., Radu, R., Schepers, D., Soci, C., Villaume, S., Bidlot, J. R., Haimberger, L., Woollen, J., Buontempo, C., and Thépaut, J. N.: The ERA5 global reanalysis: Preliminary extension
to 1950, Q. J. Roy. Meteor. Soc., 147, 4186–4227,
https://doi.org/10.1002/qj.4174, 2021.
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