is on the northern North Atlantic and the Nordic Seas. With the southern
boundary at 47 N, the study domain covers Newfoundland, but excludes various marginal and
inland seas with significant independent storm activity, such as the Mediterranean and Adriatic
Seas, as well as the Black and Caspian Seas. The northern boundary at 80 N takes the domain
up to Fram Strait, including Svalbard, but excluding
/media/vedurstofan/utgafa/skyrslur/2015/VI_2015_005.pdf
and review of some methods for regional flood frequency anal-
ysis. J. Hydrol., 186, 63–84.
GREHYS. (1996b). Inter-comparison of regional flood frequency procedures for Canadian rivers.
J. Hydrol., 186, 85–103.
Grover, P.L., Burn, D.H. & Cunderlik, J.M. (2002). A comparison of index flood estimation
procedures for ungauged catchments. Can. J. Civ. Eng., 29, 734–741.
Hosking, J.R.M. & Wallis, J.R. (1993
/media/vedurstofan/utgafa/skyrslur/2015/VI_2015_009.pdf
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/media/loftslag/Hare-2011-ParticipatoryModelling.pdf
to be simple and therefore has important drawbacks.
Future improvements should be made in the light of applications within a larger toolbox of scenario
methods.
2008 Elsevier Ltd. All rights reserved.
* Tel.: +31 317 482422; fax: +31 317 419000.
E-mail address: kasper.kok@wur.nl.
Contents lists available at ScienceDirect
Global Environmental Change
journa l homepage: www.e lsev ier .com/ locate
/media/loftslag/Kok_JGEC658_2009.pdf
level, surveys commissioned by the European Com-
munity/the European Union provide an indication of trends in concern about cli-
mate change. Since 1992, such surveys have been undertaken among representative
samples of citizens in its Member States, and specifically on topics related to the
environment (Special Eurobarometers (EB) in 1992, 1995, 2002; and a Flash EB
in 2002). These have included
/media/loftslag/Lorenzoni_Pidgeon_2006.pdf
on the ground along the direction of travel) low-
power laser in conjunction with single-photon sensitive detectors to measure ranges using
~532 nm (green) light. In the polar regions, the 91-day repeat orbit pattern with a roughly
monthly sub-cycle is designed to monitor seasonal and interannual variations of Greenland
and Antarctic ice sheet elevations and monthly sea ice thickness changes. Dense
/media/vatnafar/joklar/Reykholt-abstracts.pdf
wide and
1000 m long shelf called Þófi, terminating at 80–100 m a.s.l., see Map 4. The inclination of
the shelf is 15 on average. The surface of Þófi is covered with unconsolidated glacial till and
landslide deposits and marked with five gullies. The brook called Þófalækur near the middle of
the shelf divides it into an inner and outer part. On the outermost part of the shelf, there is a small
/media/vedurstofan-utgafa-2016/VI_2016_006_rs.pdf
approximately centred around Iceland: the outer domain with
43 42 grid points spaced at 27 km (1134 1107 km), the intermediate domain with 95 90 grid
points spaced at 9 km, and the inner domain with 196 148 grid points spaced at 3 km. The
northwest corner of the outer domain covers a part of the southeast coastal region of Greenland.
Otherwise, the only landmass included in the model domain
/media/vedurstofan/utgafa/skyrslur/2013/2013_001_Nawri_et_al.pdf
........................................................................................ 94
6.1 Tephra fallout impact during an eruption at Hekla, like 1980 ................................... 94
6.2 Tephra fallout impact during an eruption at Katla, like 1918 .................................... 94
6.3 Tephra fallout impact during an eruption at Öræfajökull, like 1362 ......................... 95
6.4 Recommendations and next steps
/media/vedurstofan-utgafa-2020/VI_2020_004.pdf