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  • 31. Isskyrsla_20100407

    N66°44.92' W025°08.94' 79. N66°45.01' W025°08.50' 80. N66°46.32' W025°10.27' 81. N66°46.73' W025°07.19' 82. N66°46.01' W025°04.86' 83. N66°46.22' W025°04.33' 84. N66°47.12' W025°06.45' 85. N66°47.26' W025°04.36' 86. N66°48.44' W025°03.60' 87. N66°49.10' W025°04.45' 88. N66°51.68' W025°03.27' 89. N66°53.36' W024°59.25' 90. N66°55.39' W024°58.89' 91. N66°55.82' W024°58.13' 92. N66°56.15' W025°01.15 /media/hafis/skyrslur_lhg/Isskyrsla_20100407.pdf
  • 32. CES_D2.4_VMGO

    size. References 1. Meehl, G.A., C. Covey, T. Delworth, M. Latif, B. McAvaney, J.F.B. Mitchell, R.J. Stouffer and K.E. Taylor, 2007: The WCRP CMIP3 Multimodel Dataset: A New Era in Climate Change Research, BAMS, 88, 1383-1394, DOI: 10.1175/BAMS-88-9-1383. 2. Naki �enovi � N., J. Alcamo, G. Davis, B. de Vries, J Fenhann, S. Gaffin, K. Gregory, A.Grübler, T.Y. Jung, T. Kram, E.L. La Rovere /media/ces/CES_D2.4_VMGO.pdf
  • 33. PhD_course-Programme_26Aug2011-final

    Christian Refsgaard, GEUS All week AP Adriaan Perrels, FMI All week SK Sigrún Karsldóttir, IMO All week FU Frederik Uldal, University of Copenhagen Logistic support Course material Papers and book chapters - recommended reading Henriksen HJ, Barlebo HC (2008) Reflections on the use of Bayesian belief networks for adaptive management. Journal of Environmental Management, 88, 1025- 1036. doi:10.1016 /media/vedurstofan/PhD_course-Programme_26Aug2011-final.pdf
  • 34. The weather in Iceland in 2021

    station total mm 1991-2020% 2011-2020 % max 24-hr mm prec.days >=1.0 mm Reykjavík 765.3 87 82 18.6 232 150 Stykkishólmur 675.7 92 88 29.9 211 124 Hólar í Dýrafirði 1237.3 # 105 112 235 132 Litla-Ávík 836.2 # 92 45.7 225 145 Skeiðsfoss 915.6 94 /about-imo/news/the-weather-in-iceland-in-2021
  • 35. BIGJ_windrose_2005-2014

    direction (%) Aerodrome Total observations: 88 Calm: 1.1% Variable winds: 0% Average wind speed for wind direction Wind direction (°) Wind speed (knots ) 0 5 10 15 20 0 45 90 135 180 225 270 315 360 N E S W N (Number of observations for wind direction) Icelandic Met Office 02. júl. 2015 5 5 4 7 13 7 5 1 1 1 1 2 2 4 2 2 4 7 1 2 1 8 2 Wind rose BIGJ June /media/vedur/BIGJ_windrose_2005-2014.pdf
  • 36. VI_2016_006_rs

    Such landslides fall from a comparatively high elevation, cause extensive disruption and upheaval of loose materials and soils in their way, and can travel considerable distances uphill against opposing slopes. Secondly, there are medium-sized or large, rapid debris flows that are released from com- paratively high elevations and are confined to gullies as they travel down the mountain- side, similar /media/vedurstofan-utgafa-2016/VI_2016_006_rs.pdf
  • 37. 2013_001_Nawri_et_al

  • 38. VI_2022_006_extreme

    towards the northern part of Vatnajökull. Table 8 – Median 1M5 values (mm 24-h-1) for eleven hydropower catchments with and without climate projections for the period 2080 – 2100. Catchment 1M5 median value mm 24-h-1 Original RCP 2.6 RCP 8.5 10% 50% 90% 10% 50% 90% Blönduvirkjun 48 41 49 58 42 50 61 Búðarháls 46 40 47 56 40 48 59 Hágöngulón 63 55 65 76 55 66 81 Hálslón 85 75 88 104 /media/vedurstofan-utgafa-2022/VI_2022_006_extreme.pdf
  • 39. VI_2020_008

  • 40. BIKF_windrose_2005-2014

    45 90 135 180 225 270 315 360 N E S W N (Number of observations for wind direction) Icelandic Met Office 02. júl. 2015 33 2 55 2 79 5 88 3 64 2 42 2 49 4 59 5 52 5 38 3 42 1 40 4 41 0 55 3 63 5 55 6 47 5 39 3 34 6 31 3 33 9 33 9 36 6 48 8 53 9 52 6 47 5 33 6 22 3 19 0 16 4 13 0 9 6 11 6 12 0 15 4 Wind rose BIKF April 2005−2014 90 80 70 60 50 40 30 2010360350340 330 320 310 300 290 280 270 /media/vedur/BIKF_windrose_2005-2014.pdf

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