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  • 21. Factsheet_Bardarbunga_20141124

    to the earth’s surface than was estimated before.  On Saturday, 22 November, at 00:51 an earthquake of magnitude M1,7 was detected in the dyke. In total about 80 earthquakes were detected in the dyke and around the eruption site in Holuhraun since Friday.  The subsidence of the Bardarbunga caldera and tectonics continues with similar rate as last few weeks. Tectonics movements show /media/jar/Factsheet_Bardarbunga_20141124.pdf
  • 22. Factsheet_Bardarbunga_20140922

    yesterday there have been 9 earthquakes bigger the M3,0. The biggest one was measured M5,5 at 10:51 yesterday morning making it the second biggest earthquake since this wave of seismic activity started on August 16. Smaller earthquakes were detected in north part of the dyke and around the eruption site.  Earthquakes up to M4 have been measured under the north-north-west mountain side /media/jar/myndsafn/Factsheet_Bardarbunga_20140922.pdf
  • 23. The

    February, the total accumulation was 51 cm. This has only once been exceeded, in January of 1937 when the snow depth was 55 cm. There was not much snow in Akureyri in 2017. Snow covered the ground completely for 50 days, 52 fewer than on the average 1971 to 2000. Days with total snow cover have never been so few in Akureyri since snow cover observations started in 1924. The greatest /about-imo/news/the-weather-in-iceland-in-2017
  • 24. Isskyrsla_20100407

    - W022°51' 12.N67°42' -W022°10' 13.N67°42'- W022°20' 14.N67°47' -W022°08' 15.N67°46'- W021°40' 16.N67°46' -W021°37' 17.N67°38' -W021°05' 18.N67°43' -W021°02' Næst landi: 52 sml NV af Barða. 48 sml NV af Straumnesi. Hér að neðan er nákvæm staðsettning ísjaðarsins ________________________ Friðrik Höskuldsson Yfirstýrimaður 1. N65°49.46' W028°04.81' 2. N65°44.19' W027°49.00' 3. N65°42.85' W027°38.41 /media/hafis/skyrslur_lhg/Isskyrsla_20100407.pdf
  • 25. Hydropower, Hydrology

    management, XXVI Nordic hydrological conference, Riga, Latvia August 9-11 2010. Nordic hydrological programme report No. 51. p138-139. Kurpniece. L., Lizuma, L., Timuhins, A., KolcovaT., Kukuls, I. (2010). Climate Change Impacts on Hydrological Regime in Latvia. Conference on Future Climate and Renewable Energy, Oslo, May 31-June 2, 2010. Meilutytė-Barauskienė D., Kriaučiūnienė J. & Kovalenkovienė M /ces/publications/nr/1938
  • 26. vanRoosmalen_etal-2009-WRR_2007WR006760

    1998] and RCM output such as incoming and outgoing, short- and long-wave radiation, temperature, water vapor pressure, and wind speed: ETref ¼ 0:408D Rn  Gð Þ þ g 900T þ 273 u2 es  eað Þ Dþ g 1þ 0:34u2ð Þ ð3Þ where ETref is reference evapotranspiration (mm d1), Rn is net radiation at the crop surface (MJ m2 d1), G is soil heat flux density (MJ m2 d1), T is mean daily air temperature at 2 m /media/loftslag/vanRoosmalen_etal-2009-WRR_2007WR006760.pdf
  • 27. VI_2019_009

    22,70,71 72 72,73 25 24,56,66 73 74,75 30 12,28 81 80 51 50,51 85 85 52 52,52 87 86 53 54,55 Figure 13 shows the frequency of present weather records from both manual and automatic sta- tions. Both stations show no weather, 0, most frequently, the automatic station in 1019 cases and the manual station in 1031 cases. In figure 14 the most frequent records (no weather) have been removed. The automatic /media/vedurstofan-utgafa-2019/VI_2019_009.pdf
  • 28. The weather app

    News The weather app The ever changing /about-imo/news/nr/2812
  • 29. The weather app improved

    News The weather app improved The ever /about-imo/news/nr/3224
  • 30. GA_2009_91A_4_Andreassen

    ). Meteorological observations carried out on Storbreen in the summer of 1955 (Liestøl1967) revealed that net radiation is the most impor-tant contributor to the ablation at Storbreen. An au-tomatic weather station (AWS) has bee operatedin the ablation zone of Storbreen since September2001 providing a near-continuous series of meteor- ology and surface energy balance data. Analysis ofthe first five years /media/ces/GA_2009_91A_4_Andreassen.pdf

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