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  • 51. Factsheet_Bardarbunga_20150203

    activity in Bardarbunga continues to be strong. Five earthquakes between M4.0-4.6 were detected since the last meeting of the Advisory Board on Friday. The strongest one was measured M4.6 yesterday at 21:35. About 10 earthquakes between magnitudes M3.0-3.9 were detected over the period. In total around 130 earthquakes were detected around the caldera since last Friday, or between 20 and 30 per day /media/jar/Factsheet_Bardarbunga_20150203.pdf
  • 52. Factsheet_Bardarbunga_20141015

    subsidence of the caldera occurs, causing an eruption at the edge of the caldera. Such an eruption would melt large quantities of ice, leading to a major jokulhlaup, accompanied by ash fall. Other scenarios cannot be excluded.  From the Icelandic Met Office: The Aviation Colour Code for Bardarbunga remains at ‘orange’.  From today, the Scientific Advisory Board will meet on Mondays /media/jar/Factsheet_Bardarbunga_20141015.pdf
  • 53. 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
  • 54. Factsheet_Bardarbunga_20141112

    quantities of ice, leading to a major jokulhlaup, 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 14 of November. The National Commissioner of the Icelandic Police, Department of Civil Protection and Emergency Management Almannavarnir /media/jar/Factsheet_Bardarbunga_20141112.pdf
  • 55. VI_2019_009

    26 36 40 41 46 50 51 52 53 54 58 60 61 62 63 64 65 68 70 71 72 73 74 80 81 83 84 85 86 87 92 Present weather (Manual) Present weather ( Automatic ) Number of records a71 a71 a71 250 500 750 250 500 750 Number of records Figure 15. Automatic station as a function of manual station. a71 a71a71a71a71a71 a71a71 a71a71a71 a71a71 a71 a71 a71a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71a71a71 /media/vedurstofan-utgafa-2019/VI_2019_009.pdf
  • 56. 2010_005_

    Century control runs, as well as 21st Century forecast runs, submitted by various institutions to the Intergovernmental Panel on Climate Change (IPCC) for their Forth 11 Table 1. General circulation and regional climate models that were considered in this study. Model Version Model Name, Institute BCCR BCM 2.0 Bergen Climate Model, Bjerknes Centre for Climate Research, Bergen, Norway CCCMA CGCM 3.1 /media/ces/2010_005_.pdf
  • 57. CASE_A___Jes_Pedersen_(Region_Midt,_Dk)_Introduction

    ). The surface area of the fiord is approximately 46 km2 and the mean depth is 2.9 m besides a narrow shipping channel with a depth between 7 and 22 m. The catchment area is 517 km2 and dominated by agriculture (75%) with small areas of forests, wetlands, lakes and urban areas. The annual freshwater input is in the order of 100 Mm3, where approximately 70% is channelled through two main creaks /media/loftslag/CASE_A___Jes_Pedersen_(Region_Midt,_Dk)_Introduction.pdf
  • 58. Case_A___Horsens_Fjord

    already exist today. What is crucial is the ability to combine individual solutions from different sectors and think about the positive aspects of climate changes. A good combination can actually create new values for society and make the coming work considerably less expensive. The key concept is good processes between different players involved in climate change adaptation. With an open /media/loftslag/Case_A___Horsens_Fjord.pdf
  • 59. Horsens_case

    a narrow shipping channel with a depth between 7 and 22 m. The catchment area is 517 km2 and dominated by agriculture (75%) with small areas of forests, wetlands, lakes and urban areas. The annual freshwater input is in the order of 100 Mm3, where approximately 70% is channelled through two main creaks Bygholm å and Hansted å, located in the inner part of the fjord. Several smaller streams /media/loftslag/Horsens_case.pdf
  • 60. The weather in Iceland in 2018

    of bright sunshine hours in June have not been as few since 1914. It was sunny in Reykjavík in March, August and September. In Akureyri the number of bright sunshine hours was above normal in March, June and September but below normal in April, July, August and October. Sea level pressure The annual average in Reykjavík was 1003.0 hPa, 2.9 below the 1961 to 1990 mean. The absolute /about-imo/news/the-weather-in-iceland-in-2018

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