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6University of Washington,
Seattle, WA 98195, USA. 7NOAA Geophysical Fluid
Dynamics Laboratory, Princeton, NJ 08540, USA.
*Author for correspondence. E-mail: cmilly@usgs.gov.
An uncertain future challenges water planners.
Published by AAAS
on July 12, 201
1
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/media/loftslag/Milly_etal-2008-Stationarity-dead-Science.pdf
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Working paths and
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/media/ces/Alam_Ashraful_CES_2010.pdf
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/media/loftslag/VanderKeur_etal-2008-Uncertainty_IWRM-WARM.pdf
probably a few meters.
An interactive 3D model of the earthquakes during the magma
intrusion. The di?rent colours represent the activity in time from
16 August to 12 September.
During the magma intrusion, intense earthquake activity related to
subsidence of the Bárðarbunga caldera was located at the caldera
rim. Over 70 earthquakes above magnitude 5 occurred in the first
four months after the onset
/media/vedurstofan/utgafa/skyrslur/2015/IMO_AnnualReport2014.pdf
; from which
extensive data streams enter IMO and are utilized
for forecasts and research purposes.
Dissemination
The main dissemination of IMO is in the form of
forecasts and warnings; through radio, T V, direct di-
alog with stakeholders and through IMO‘s web-site
(vedur.is). Additionally, the web provides compre-
hensive real-time data on the weather, earthquakes
and deformation, as well
/media/vedurstofan/utgafa/arsskyrslur/VED_AnnualReport-2013_screen.pdf
eruption at or near Grímsvötn, was about to
begin, or was already in progress. Immediately,
NCPA upgraded to alert phase and OACC di-
verted all air traffi c to >60 nautical miles (>111
km) distance from Grímsvötn. A volcano-SIG-
MET warning of a signifi cant meteorological
hazard to aviation was broadcast at 2026 UTC,
specifying the likely location and probable
height of the tephra plume
/media/jar/myndsafn/2005EO260001.pdf