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  • 31. VI_2020_004

    vedur@vedur.is Veðurstofa Íslands Bústaðavegur 7–9 108 Reykjavík Sara Barsotti, Veðurstofa Íslands Sigrún Karlsdóttir, Veðursstofa Íslands Anna María Ágústsdóttir, Landgræðslan Björn Oddsson, Almannavarnadeild Ríkislögreglustjóra Íris Marelsdóttir, Embætti landlæknis Þorvaldur Þórðarson, Jarðvísindastofnun H áskólans Þórólfur Guðnason, Embætti landlæknis Bogi B. Björnsson, Veðurstofa Íslands /media/vedurstofan-utgafa-2020/VI_2020_004.pdf
  • 32. RaisanenJouni_CES_2010

    – observed and simulated changes in global mean temperature • Pattern scaling approach – changes in mean climate and variability assumed to be proportional to the change in global mean temperature Regression coefficients of winter mean temperature: how much is climate on the average simulated to change per 1°C of global warming? X X Helsinki (60ºN, 25ºE): On average, the mean winter temperature /media/ces/RaisanenJouni_CES_2010.pdf
  • 33. TietavainenHanna_CES_2010

    and objective CES Conference, Oslo 31.5.-2.6.2010 Study area • Two study areas sized 100 x 100 km located in north-eastern (NE) and south-western (SW) part of Finland • Climatologically different zones: • NE: • between middle- and north-boreal zones • continental climate • SW: • between hemi- and south-boreal zones • maritime influence • Past and future monthly precipitation sums in May-September /media/ces/TietavainenHanna_CES_2010.pdf
  • 34. Ash measurements

    in estimating the height of the plume. At this time, the plume reached heights of 8 - 12 km. During the 2010 Eyjafjallajökull eruption, the weather radar proved to be a very useful tool, but the great distance to the eruption site (160 km) reduced the quality of the data. Therefore, a mobile X-band weather radar was purchased, but while this custom made radar was being assembled and tested, another /about-imo/news/nr/2183
  • 35. CES_D2.4_solar_CMIP3

    was represented on the native grids of each individual model. Therefore, the monthly means of the modelled radiation were first interpolated onto a common 2.5 x 2.5 degree grid, and 30 year running means were applied to smooth the influence of random interannual variability. Thereafter, anomalies from the baseline period mean were calculated. 2 Fig. 2. Percentage change of incident global solar /media/ces/CES_D2.4_solar_CMIP3.pdf
  • 36. vonKorff_etal-2010

    finished, and possibly tested before implementation starts (Bots 2007). Following Bots (2007), we note that the word “design” can denote an activity as well as a product. In this article, design as a product is synonymous with the participation plan (point y). This plan is based on design as an activity, represented here by the space between points x and y. What needs to happen in this phase (x /media/loftslag/vonKorff_etal-2010.pdf
  • 37. VI_2020_005

  • 38. VI2010-006_web

    Veðurstofu Íslands Halldór G. Pétursson, Náttúrufræðistofnun Íslands H æ t t u matsnefnd Akureyrarbæjar 4 Efnisyfirlit 1 Inngangur 7 1.1 Starf hættumatsnefndar . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 1.2 Vinnuferli Veðurstofu Íslands . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 1.3 Efnisatriði og kaflaskipting /media/vedurstofan/utgafa/skyrslur/2010/VI2010-006_web.pdf
  • 39. IMO_AnnualReport2014

    ANNUAL REPOR T 2014 2 I C E L A N D I C M E T O F F I C E / A N N U A L R E P O R T 2 0 1 4 ?Veðurstofa Íslands 2015 Bústaðavegur 7–9, 108 Reykjavík, Iceland The annual report was drafted by the IMO sta?. Editor: Sigurlaug Gunnlaugsdóttir Design and layout: Hvíta húsið Printing: Oddi ISSN 2251-5607 Cover photo: Gro Birkefeldt Møller Pedersen I N D E X 4 Bárðarbunga 7 Rockslide /media/vedurstofan/utgafa/skyrslur/2015/IMO_AnnualReport2014.pdf
  • 40. Vertical displacement in the Bárðarbunga caldera

    September 2014. The gray line represents relative displacement and the blue line the median value for 180 minutes. Earthquakes in the area are shown separately below (same x-axis, same timing). Enlarge. The first two weeks as an example Total subsidence from 12 Sept 2014 until 1 March 2015 The total subsidence of the glacier surface above the Bárðarbunga caldera since the equipment /earthquakes-and-volcanism/gps-measurements/bardarbunga/caldera/

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