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Near-surface mean and gust wind speeds in ERA5 across Sweden: towards an improved gust parametrization
by
Zhang, F.
, Flay, R. G. J.
, Pirooz, A. A. Safaei
, Minola, L.
, Hersbach, H.
, Chen, D.
, Azorin-Molina, C.
in
climate
/ Climatology
/ Dependence
/ dynamics
/ Earth and Environmental Science
/ Earth and Related Environmental Sciences
/ Earth Sciences
/ Elevation
/ Geophysics/Geodesy
/ Geovetenskap och relaterad miljövetenskap
/ Gusts
/ Mean winds
/ Mountain regions
/ Mountains
/ Norway
/ Oceanography
/ Parameterization
/ Stations
/ Surface wind
/ Sweden
/ topography
/ Wind measurement
/ Wind speed
2020
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Near-surface mean and gust wind speeds in ERA5 across Sweden: towards an improved gust parametrization
by
Zhang, F.
, Flay, R. G. J.
, Pirooz, A. A. Safaei
, Minola, L.
, Hersbach, H.
, Chen, D.
, Azorin-Molina, C.
in
climate
/ Climatology
/ Dependence
/ dynamics
/ Earth and Environmental Science
/ Earth and Related Environmental Sciences
/ Earth Sciences
/ Elevation
/ Geophysics/Geodesy
/ Geovetenskap och relaterad miljövetenskap
/ Gusts
/ Mean winds
/ Mountain regions
/ Mountains
/ Norway
/ Oceanography
/ Parameterization
/ Stations
/ Surface wind
/ Sweden
/ topography
/ Wind measurement
/ Wind speed
2020
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Near-surface mean and gust wind speeds in ERA5 across Sweden: towards an improved gust parametrization
by
Zhang, F.
, Flay, R. G. J.
, Pirooz, A. A. Safaei
, Minola, L.
, Hersbach, H.
, Chen, D.
, Azorin-Molina, C.
in
climate
/ Climatology
/ Dependence
/ dynamics
/ Earth and Environmental Science
/ Earth and Related Environmental Sciences
/ Earth Sciences
/ Elevation
/ Geophysics/Geodesy
/ Geovetenskap och relaterad miljövetenskap
/ Gusts
/ Mean winds
/ Mountain regions
/ Mountains
/ Norway
/ Oceanography
/ Parameterization
/ Stations
/ Surface wind
/ Sweden
/ topography
/ Wind measurement
/ Wind speed
2020
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Near-surface mean and gust wind speeds in ERA5 across Sweden: towards an improved gust parametrization
Journal Article
Near-surface mean and gust wind speeds in ERA5 across Sweden: towards an improved gust parametrization
2020
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Overview
The ERA5 reanalysis product has been compared with hourly near-surface wind speed and gust observations across Sweden for 2013–2017. ERA5 shows closer agreement than the previous ERA-Interim reanalysis with regard to both mean wind speed and gust measurements, although significant discrepancies are still found for inland and mountainous regions. Therefore, attempts have been made to improve formulations of the gust parametrization used in ERA5 by adding an elevation-dependency and by adjusting the convective gust contribution. Major improvements, especially over mountain regions, are achieved when the elevation differences among the stations are considered. Closer agreement between the observed and parametrized gusts is reached when the convective gust contribution is also tuned. The newly designed gust parametrization was also tested for Norway, which is characterized by more complex topography. Wind gusts from the selected Norwegian stations are more realistically simulated when both the elevation-dependency and the tuned convective contribution are implemented, although the parametrized gusts are still negatively biased. Such biases are not explained by the different in gust duration in recorded wind gusts between Sweden and Norway.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V
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