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  • 21. Factsheet_Bardarbunga_20141027

    University of Iceland along with representatives from the Icelandic Civil Protection and the Environmental Agency of Iceland. Main points  Volcanic eruption in Holuhraun  Air quality  Scenarios Notes  The volcanic eruption in Holuhraun continues with similar intensity.  Seismic activity in Bardarbunga continues to be strong. Over 200 earthquakes have been detected in the caldera /media/jar/Factsheet_Bardarbunga_20141027.pdf
  • 22. Factsheet_Bardarbunga_20141029

    University of Iceland along with representatives from the Icelandic Civil Protection and the Environmental Agency of Iceland. Main points  Volcanic eruption in Holuhraun  Air quality  Scenarios Notes  The volcanic eruption in Holuhraun continues with similar intensity.  Seismic activity in Bardarbunga continues to be strong. 130 earthquakes have been detected in the caldera over /media/jar/Factsheet_Bardarbunga_20141029.pdf
  • 23. Factsheet_Bardarbunga_20141031

    around magnitude M1,0 and smaller.  GPS measurements in the active area show minor changes. A recommendation by the Scientific Advisory Board of the Icelandic Civil Protection: The Scientific Advisory Board concludes that it is necessary to increase monitoring of SO4 so it is possible to evaluate the concentration of sulphuric acid particles and its potential influence on health. Air /media/jar/Factsheet_Bardarbunga_20141031.pdf
  • 24. Factsheet_Bardarbunga_20141103

    site in Holuhraun. Most reliable are the forecast maps approved my meteorologist on duty, see Gas forecast. And although still being developed further, an automatic forecast, see Gas model, is also available (trial run, see disclaimer). • A new online gas detector has been put up in Hofn in Hornafjordur. Measurements of air quality can be found on the NATIONAL COMMISSIONER OF THE ICELANDIC /media/jar/Factsheet_Bardarbunga_20141103.pdf
  • 25. Factsheet_Bardarbunga_20141105

    accompanied by ash fall. Other scenarios cannot be excluded.  From the Icelandic Met Office: The Aviation Colour Code for Bardarbunga remains at ‘orange’.  The next meeting will be held on Friday November 7th. The National Commissioner of the Icelandic Police, Department of Civil Protection and Emergency Management Almannavarnir Civil Protection and Emergency Management, Twitter /media/jar/Factsheet_Bardarbunga_20141105.pdf
  • 26. Moellenkampetal_etal-2010

    Acteurs et Usages (UMR G-EAU), Cemagref, 4University of Architecture, Civil Engineering and Geodesy, 5Hornsby Shire Council, 6Lisode, 7UN-Water Decade Programme on Capacity Development (UNW-DPC), United Nations University, 8School of Natural and Rural Systems Management, University of Queensland, 9College of Asia and the Pacific, The Australian National University, 10Marine and Atmospheric Research /media/loftslag/Moellenkampetal_etal-2010.pdf
  • 27. VI_2016_006_rs

    of 100–140 m a.s.l. Several debris flows are recorded in Búðará since the beginning of the 20th century. It is not clear whether the upper or lower area is the main source for these debris flows. The return time for sizeable debris flows in Búðará is around 20 years. It appears that the land- slide activity has been more frequent in the last 30 years than earlier in the 20th century. 4.5 Areas 7 /media/vedurstofan-utgafa-2016/VI_2016_006_rs.pdf
  • 28. 2010_012rs

    ) closest stations, respectively. The 40 highest correlating events are then inverted for the best location. For comparison the manual locations, obtained by an analyst are shown in yellow. The final locations of the events are all within an approximately 1 km2 area, even though their original, automatic locations are up to 5 km away. They are also within a few hundred meters from the manual /media/vedurstofan/utgafa/skyrslur/2010/2010_012rs.pdf
  • 29. ces-oslo2010_proceedings

    change over the North Atlantic and in some simulations also for Iceland. In all areas, including the North Atlantic and Iceland, a clear climate change signal compared to the spread between the simulations is seen. The standard deviation calculated from 17 of the simulations are less than 1°C in all areas apart from Iceland where it reaches between 1 and 2°C and in parts of the Barents Sea where /media/ces/ces-oslo2010_proceedings.pdf
  • 30. CES_D2.4_task2_CMIP3_winds

    in the average wind speed between the baseline (or control) period 1971-2000 and the scenario period 2046-2065. These periods were chosen based on the availability of model output at daily time resolution. We have analyzed the surface geostrophic wind (hereafter Vg) rather than the actual simulated surface winds, because the latter are sensitive to the details of the boundary layer /media/ces/CES_D2.4_task2_CMIP3_winds.pdf

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