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  4. Recent Near-Surface Temperature Trends In The Antarctic Peninsula From Observed, Reanalysis And Regional Climate Model Data
 
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Recent Near-Surface Temperature Trends In The Antarctic Peninsula From Observed, Reanalysis And Regional Climate Model Data

Journal
Advances in Atmospheric Sciences
Date Issued
2020-04-05
Author(s)
Bozkurt, Deniz  
Facultad de Ciencias  
David H. Bromwich
Jorge Carrasco
Keith M. Hines
Juan Carlos Maureira
Roberto Rondanelli
DOI
10.1007/s00376-020-9183-x
WoS ID
WOS:000523585200001
Abstract
This study investigates the recent near-surface temperature trends over the Antarctic Peninsula. We make use of available surface observations, ECMWF’s ERA5 and its predecessor ERA-Interim, as well as numerical simulations, allowing us to contrast different data sources. We use hindcast simulations performed with Polar-WRF over the Antarctic Peninsula on a nested domain configuration at 45 km (PWRF-45) and 15 km (PWRF-15) spatial resolutions for the period 1991-2015. In addition, we include hindcast simulations of KNMI-RACMO21P obtained from the CORDEX-Antarctica domain (~50 km) for further comparisons. Results show that there is a marked windward warming trend except during summer. This windward warming trend is particularly notable in the autumn season and likely to be associated with the recent deepening of the Amundsen/Bellingshausen Sea low and warm advection towards the Antarctic Peninsula. On the other hand, an overall summer cooling is characterized by the strengthening of the Weddell Sea low as well as an anticyclonic trend over the Amundsen Sea accompanied by northward winds. The persistent cooling trend observed at the Larsen Ice Shelf station is not captured by ERA-Interim, whereas hindcast simulations indicate that there is a clear pattern of windward warming and leeward cooling. Furthermore, larger temporal correlations and lower differences exhibited by PWRF-15 illustrate the existence of the added value in the higher spatial resolution simulation.
Subjects

Atmospheric Science

Meteorology And Atmos...

OCDE Subjects

Natural Sciences::Ear...

Quartile (Date Issued)
Q3
License
acceso abierto
Open Science Path
https://creativecommons.org/licenses/by/4.0/

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