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  • 71. Cradden_Lucy_CES_2010

    Capacity (A) F r e q u e n c y control future +0.4std dev (as % of mean) -0.68max -8.32min -1.74mean % change June 2010 15 Time series 450 500 550 600 650 700 Hour C a p a c i t y ( A ) Typical year of control period Seasonal average rating Calculated capacity 450 500 550 600 650 700 Hour C a p a c i t y ( A ) Typical year under future scenario Calculated capacity Seasonal average /media/ces/Cradden_Lucy_CES_2010.pdf
  • 72. Dyrrdal_Anita_CES_2010

    Results W i n t e r t e m p e r a t u r e Max snow depth Trend slope Number of snow days Period II P e r i o d I I I Max snow depth Number of snow days Norwegian Meteorological Institute met.no Correlation analysis (1961-08) 138 mutual stations Introduction Data & Methods Results Correlation with winter temperature Correlation with winter precipitation In warmer regions both snow parameters /media/ces/Dyrrdal_Anita_CES_2010.pdf
  • 73. Sigurður Th. Rögnvaldsson

    In collaboration with Ragnar Slunga, his most important contributions were in automatic estimation of fault-plane solutions for microearthquakes by inverting observed polarities and spectral amplitudes of P- and S-waves, and in relative locations of microearthquakes. Sigurður’s research thus demonstrated that microearthquakes contain information about large-scale tectonic processes. During his student years /earthquakes-and-volcanism/conferences/jsr-2009/sigurdur/
  • 74. Sigurður Th. Rögnvaldsson

    In collaboration with Ragnar Slunga, his most important contributions were in automatic estimation of fault-plane solutions for microearthquakes by inverting observed polarities and spectral amplitudes of P- and S-waves, and in relative locations of microearthquakes. Sigurður’s research thus demonstrated that microearthquakes contain information about large-scale tectonic processes. During his student years /earthquakes-and-volcanism/conferences/jsr-2009/sigurdur
  • 75. Rolf_Johnsen_(Region_Midt,_Dk)

    Reference list: Thomé- Scmidt, P. “Sea level change affecting the spatial development in the Baltic Sea Region.” Geological Survey of Finland, special edition paper 41. pp. 51-59. Van Roosmallen L., Christensen, B.S.B, Sonnenborg, T.O. “Regional difference in climate change impacts on groundwater and stream discharge in Denmark”, 2007. Vadose Zone Journal 6: 554-571. /media/loftslag/Rolf_Johnsen_(Region_Midt,_Dk).pdf
  • 76. esa_flyer_new

    EA Analyse A/S and Optensys Energianalys will forecast energy system variables, while SINTEF Energy Research will make assumptions for the energy system in different cases, include new inputs in the EMPS model and carry out simulations. Cl i ma t e Sc e nar i os G ro u p R i s ø St o c h as t i c v a r i a b l e s Clima t e s c e n a r i o NV E S M H I FE I N o r w a y S w e d e n F inla n /media/ces/esa_flyer_new.pdf
  • 77. Karlsdottir-Risk_analysis_IMO_SK

    eruptions close to populated areas and/or international airports International Strategy for Disaster Reduction (www.unisdr.org) WMO (1999) Comprehensive Risk Assessment for Natural Hazards WMO/TD No. 955, 92 p. Living with Risk: A global review of disaster reduction initiatives (2004) Global assessment report on disaster risk reduction (2009) Terminology www.unisdr.org/eng/terminology /media/loftslag/Karlsdottir-Risk_analysis_IMO_SK.pdf
  • 78. ces_geus_paakitsoq_full_report

    The applied glacier mass balance model is a simplified version of the energy balance approach. An abstract of the model is given in the following, for a comprehensive model description we refer to Machguth et al. (2009). The model requires air temperature (Ta), global radiation (Sin) and precipitation (P ) for meteorological input. The model runs at daily steps, and the cumulative mass balance bc on day t /media/ces/ces_geus_paakitsoq_full_report.pdf
  • 79. Hydropower, Hydrology

    in Finland. Water Resour Management (2010) 24:3437-3459. DOI 10.1007/s11269-010-9614-z. Veijalainen N., Lotsari, E., Alho, P., Vehviläinen, B., Käyhkö, J. (2010). National scale assessment of climate change impacts on flooding in Finland. Journal of Hydrology 391 (2010) 333-350. Yang, W., Andréasson, J., Graham, L.P., Olsson, J., Rosberg, J. & Wetterhall, F. (2010). Distribution-based scaling /ces/publications/nr/1938
  • 80. 2010_003rs

    place in the same area on 5 December in 1968 (Tryggvason, 1973; Erlendsson and Einarsson, 1996; Halldórsson, 2004). A quite large event also occurred on the RP on 10 June 1933. Its best known location is near to Fagradalsfjall, at 63.9°N and 22.2°W, and it was probably of magnitude M 5.5 (Tryggvason, 1973; Halldórsson, 2004). 8 F ig ure 1 .3 . A m a p s h o w in g e p ice n tr e lo /media/vedurstofan/utgafa/skyrslur/2010/2010_003rs.pdf

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