m.maturilli, s. dahlke, m. kayser, j. boike, p. fischerfrom dahlke and maturilli (2017), adv.met.,...
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M.Maturilli, S. Dahlke, M. Kayser, J. Boike, P. Fischer
Svalbard Science Conference, 6-8 Nov 2017, Oslo
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annual mean T [2007-2016] anomaly vs. [1951-1980]
source: https://data.giss.nasa.gov/gistemp/maps/
GISS Surface Temperature Analysis
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global warming
albedo changes
more absorption
Arctic warming
more latent heat flux
warmer ocean
more water vapour
clouds
increasing
downward
LW radiation
aerosols
meridional advection atmosphere
ocean
How relevant are these processes
in Svalbard ?
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data: homogenized by Øyvind Nordli,
provided by Inger Hansen-Bauer, met.no
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Update of Maturilli et al. (2013), doi:10.5194/essd-5-155-2013
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Update of Maturilli et al. (2015), doi: 10.1007/s00704-014-1173-4
Focus on winter
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Update of Maturilli et al., (2015)
increase in thermal emission near-surface warming
Update of Maturilli et al. (2015), doi: 10.1007/s00704-014-1173-4
increase in
LWnet
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Dec-Jan-Feb mean decadal temperature trend at 850 hPa
(ERA-Interim 1996-2016)
from Dahlke and Maturilli (2017), in press
winter warming strongest
in the North Atlantic Arctic
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warming at the surface
winter
? atmospheric column
aerosol clouds
water vapour
greenhouse gases
temperature
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Observations by balloon-borne radiosondes
water vapour
temperature
• vertical profiles up to 30 km
• daily soundings since 1993
• T, H2O, wind, pressure
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Change in Temperature
from Maturilli and Kayser (2016), doi:10.1007/s00704-016-1864-0
winter warming
throughout entire troposphere
temperature
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Change in Atmospheric Moisture
from Maturilli and Kayser (2016), doi:10.1007/s00704-016-1864-0
local source
advection
water vapour
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Change in Synoptic Wind Direction:
from Maturilli and Kayser (2016), doi:10.1007/s00704-016-1864-0
advection
In recent winters, synoptic flow
is more frequent from SOUTH.
Changes in atmospheric circulation ?
What is the advective contribution to the observed warming ?
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Back-Trajectory Study
confirms increased advection
from Atlantic region
from Dahlke and Maturilli (2017), Adv.Met., in press
Sea-level Pressure
Anomaly Pattern
related to increased advection
from Atlantic region
meridional advection
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normalized time series of the DJF SLP composite pattern
from Dahlke and Maturilli (2017), Adv.Met., in press
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zonal flow meridional flow
connection
to the mid-latitudes
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MER
RA
data, Jan
. 20
12
, NA
SA
Color: wind speed
movie from https://svs.gsfc.nasa.gov/3864
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Increase in early winter, here: December
Trend of frequency of extreme cyclone events [6h-events/decade]
based on ERA-Interim data, 1979–2015.
from Rinke et al. (2017), doi:10.1088/1748-9326/aa7def
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ERA-interim
surface pressure [hPa] (contour lines)
and temperature [°C] (color-coded)
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Pressure Temperature
Atmospheric Observations
Precipitation H2O column
data from AWIPEV Meteorological Observatory; precipitation data from met.no
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Temperature Snow Height
Terrestrial Observations
data from AWIPEV Permafrost Observatory
Soil Temperature
warming of the active layer
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Marine Observations
data from AWIPEV Underwater Observatory
related to turbulence and mixing
induced by geostrophic wind forcing
Kongsfjord hydrography
dominated by
• Arctic water in winter
• Atlantic water in summer [Svendsen et al., 2002]
Atlantic water inflow
“Atlantification” affects marine ecosystem
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Among other factors of Arctic Amplification, cyclonic activity plays a prominent role for the warming of the Svalbard region, affecting the atmospheric, terrestrial and marine subsystems.
mid-latitude effect
on the Arctic
Arctic effect
on mid-latitudes
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