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  • 11. Hare-2011-ParticipatoryModelling

    stage )Suppor t an d ski lls n ee de d Har e et a l. (2003 ) X X An aly se lin ks be tw ee n participator y structur e an d proces s implementatio n Ba rr et ea u et a l. (2010 ) X X X Pr o vid e cle ar de sc rip tio n o fproces s (m an ag e ex pe ct at io n s); monitorin g an d evaluatio n Bot s an d va n Daale n (2008 ) X X X X X Su pp o rt pr o ce ss de sig n Ad ap te d fra m ew o rk u se d in th /media/loftslag/Hare-2011-ParticipatoryModelling.pdf
  • 12. Keranen_Jaana_CES_2010

    of fu tu re clim ate, hydro lo gic al m o del or wind m odel. Conse quen c e catego ry Like lih ood of th e consequ ence s to the e ne rgy pr od uc tion R isk r educ tio n / con trol / po tential D istribution netw ork P ow er p lan t En erg y sour ce, (e.g . catchme nt area , pe at or b iomass prod uctio n area ) Like lihood of th e phen om ena Sc en arios and Ph enom ena /media/ces/Keranen_Jaana_CES_2010.pdf
  • 13. Hare_2-participation

    and its results Policy makers and scientists may agree that its great, but at the operational management level there are problems Sources: personal experience, Borowski and Hare (2007), Hare (2011), others 1. Competent authorities’reluctance −Lack of knowledge about Participatory Management −Participation = information provision −Participation undertaken by PR department −Fear of high costs /media/loftslag/Hare_2-participation.pdf
  • 14. VI_2017_009

    temperature (TASMIN), and daily precipitation (PR). 2.2 Domain and spatial resolution The area around Iceland is of primary importance in this study. The exact location of the Iceland domain differs between papers but it is normally considered as the area between 60°- 70°N and 10°-30°W (e.g. Schneidereit et al., 2007, and Nawri and Björnsson, 2010). Here we use this definition. More than 70 /media/vedurstofan-utgafa-2017/VI_2017_009.pdf
  • 15. Perrels-CBA

    while accounting for rigidity of supply in transport systems Default effect S0 – S1 Remaining effect after counter measure S0 – S1* Loss for consumer without measure: (p1 – p0) . Q1 + (p1 – p0) .(Q1-Q0)/2 Loss for consumer after measure: negligible Source: Nurmi and Perrels, 2011 (forthcoming) G en er al is ed tra ns po rt co st /km pr ox y Traffic volume 26.8.2011Adriaan Perrels/IL 27 Example /media/loftslag/Perrels-CBA.pdf
  • 16. Bárðarbunga 2014 - August events

    the event than in the previous eruption, but more lava is being extruded. At 07 AM the lava flow was around 1 km wide and 3 km long towards northeast. The thickness was estimated a few meters, the flow about 1000 m3 pr second. Approximately 500 earthquakes were detected in the area and smaller than before. The strongest earthquake, M3.8 was in the Bárðarbunga caldera. Poor weather conditions prevail /earthquakes-and-volcanism/articles/nr/3000
  • 17. Bardarbunga-2014_August-events

    It was detected on Míla´s web-camera at 05:51 AM. Fewer earthquakes seem to follow the event than in the previous eruption, but more lava is being extruded.  At 07 AM the lava flow was around 1 km wide and 3 km long towards northeast. The thickness was estimated a few meters, the flow about 1000 m3 pr second.  Approximately 500 earthquakes were detected in the area and smaller than before /media/jar/Bardarbunga-2014_August-events.pdf
  • 18. Bárðarbunga 2014 - August events

    the event than in the previous eruption, but more lava is being extruded. At 07 AM the lava flow was around 1 km wide and 3 km long towards northeast. The thickness was estimated a few meters, the flow about 1000 m3 pr second. Approximately 500 earthquakes were detected in the area and smaller than before. The strongest earthquake, M3.8 was in the Bárðarbunga caldera. Poor weather conditions prevail /earthquakes-and-volcanism/articles/nr/3000/
  • 19. Refsgaard_2-uncertainty

    of rainfall days No change in distribution of rainfall intensity Etc. Seven sub-models –Horisontal discretization: 500 m –Vertical discretization – layers, varying numbers and geometry Delmodel Samlede landareal (km2) Aktive grids pr. lag Omr. 1 – Sjælland 7163 37569 Omr. 2 – Sydhavsøerne 2042 13885 Omr. 3 – Fyn 3473 24009 Omr. 4 – Sønderjylland 7897 35869 Omr. 5 – Midtjylland 11578 49993 Omr /media/loftslag/Refsgaard_2-uncertainty.pdf
  • 20. 2012-Refsgaard_etal-uncertainty_climate-change-adaptation-MITI343

    :sho rt term ;L :lon g ter m Sp at ia lS co pe : L: lo ca liz ed ;W : w id es pr ea d Mitig Adapt Strateg Glob Change Possible adaptation measures Adaptation options to increasing wet conditions during autumn, winter and spring include improved drainage of agricultural fields (renewing tile drains) and conversion of agricultural land with risk of inundation to perennial energy crops (e.g. willow /media/loftslag/2012-Refsgaard_etal-uncertainty_climate-change-adaptation-MITI343.pdf

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