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  • 31. isskyrsla_2012-01-11.pdf

    Kögri. Ísinn var þunnur en svo virtist sem stöku jakar væru 10-15 sml. innan við megin röndina. SLAR mynd af legu íssins. Flugskýrsla TF-SIF 11. Janúar 2012 Flug nr. 00212.025 Næst landi liggur ísinn um eftirtalda staði: Kl.1550, ískönnun lokið. Veður: V- 10-35 HN, létt skýjað austast en 4-6/8 ský á vestur og norðurmiðum /media/2012/isskyrsla_2012-01-11.pdf
  • 32. hafisskyrsla-23-mars-2011

    2. 66°03N 026°18V 3. 66°10N 026°01V 4. 66°24N 025°18V 5. 66°58N 023°21V 6. 67°03N 023°24V 7. 67°33N 022°26V Var ísröndin næst landi: 56 sml frá Látrabjargi. 38 sml frá Barða. 38 sml frá Kögri. 50 sml frá Hornbjargi. Veður: V 10-23 kt léttskýjað og gott skyggni. Viggó M. Sigurðsson Stýrimaður. /media/hafis/skyrslur_lhg/hafisskyrsla-23-mars-2011.pdf
  • 33. isskyrsla_14122010

    segir hann að þetta er dreifar og þéttur ís hjá honum, lofthiti -5°c. Staður á LLDM er N67.12,10, W020.04,44. LLDM er á leið til Ísafjarðar til að landa rækju þar. Eftir lendingu í Reykjavík upplýsti TFB að LLDM hefði haft samband vegna hafíss. Hafði kl.0030 siglt framá 30-30 metra háan borgarís á stað: 67°10,45´n-020°14,7´v. Sást allvel í ratsjá. Þéttleiki hafíss í næsta nágrenni um 3/10 /media/hafis/skyrslur_lhg/isskyrsla_14122010.pdf
  • 34. norsem_lund

    and Finland. The event was located approximately 59 km SE of Piteå and 80 km NE of Skellefteå in Sweden, while the distance to the nearest Finnish city, Raahe, was 100 km. The earthquake was widely felt in northern Sweden and Finland, the furthest reports come from some 250 km away, with intensities up to V. The main event was followed by 6 aftershocks within the first 8 hours, and two /media/norsem/norsem_lund.pdf
  • 35. ces-glacier-scaling-memo2009-01

    2008) together with a regression line through this data set and a regression line derived for a data set of more than a hundred valley glaciers (Bahr and others, 1997). The regression lines are of the form v = csg ; (5) where v and s are glacier volume and area, respectively. The coefficient and exponent for the Icelandic ice caps are c = 0:048, g = 1:23, when the area and volume are expressed /media/ces/ces-glacier-scaling-memo2009-01.pdf
  • 36. Tornado_Impacts_-_FMI_Presentation

    -scale Category P e r c e n t a g e o f C a t e g o r y F a t a l i t i e s Permanent Homes Casualties and Timing Casualties and Time of Day 150 200 250 I n d e x V a l u e Fatalities 0 50 100 Overnight Morning Early Afternoon Late Afternoon Late Evening I n d e x V a l u e Injuries Nocturnal Tornadoes 7 8 9 10 R a t i o N i g h t t o O t h e r T i m e s 0 1 2 3 4 5 6 F0 F1 F2 F3 F4 F /media/loftslag/Tornado_Impacts_-_FMI_Presentation.pdf
  • 37. Dataseries and components

    Analysed components - IMO's research: Sulphur and salinity measurements: Precipitation: SO4-S, NO3-N, Cl, Na, Mg, K, Ca (mg/l) Precipitation: conductivity (µS/cm), quantity (mm), pH Aerosol: SO4-S, Cl, Na, Mg, K, Ca, Fe (µg/m3) Air: SO2-S (µg/m3) Heavy metals in precipitation: Pb, Cd, Cu, Zn, Cr, Ni, Fe, Mn, V, As, Al (ng/ml) Cl, NO3-N, SO4-S, Na, K, Ca, Mg, NH4-N, Br, F (µg/ml) conductivity (µS/cm /pollution-and-radiation/pollution/components/
  • 38. Kjellstrom_Erik_CES_2010

    v An example of spread between individual simulations • Winter (DJF) changes in T2m in the three recommended CES simulations DMI−HIRHAM5−ECHAM5−r3 METNO−HIRHAM−HadCM3Q0 SMHIRCA−BCM Ensemble mean change (2021-2050 vs 1961-1990) in precipitation ANN DJF JJA M E A N S t d D e v An example of spread between individual simulations • Summer (JJA) changes in precipitaiton in four simulations /media/ces/Kjellstrom_Erik_CES_2010.pdf
  • 39. CASE_B__Heikki_Tuomenvirta_(FMI)_Introduction

    will review a set of stakeholder involvement and decision making issues with the above outline as backdrop. References: [1] Marttila, V., Granholm, H., Laanikari, J., Yrjölä, T., Aalto, A., Heikinheimo, P., Honkatukia, J., Järvinen, H., Liski, J., Merivirta, R. & Paunio, M. 2005. Finland’s National Strategy for Adaptation to Climate Change. MMM Publication 1a/2005. 276 pp. [2] Kokkarianen, V /media/loftslag/CASE_B__Heikki_Tuomenvirta_(FMI)_Introduction.pdf
  • 40. VI_2017_009

    In Chapter 3 we focus on the following monthly averages: Near-surface 2 meter temperature (TAS), total precipitation (TP), and sea ice cover (SI). In Chapter 4 we add surface air pressure (PSL) and snow cover thickness (SNCT). The following daily fields will be studied as well: Near-surface wind speeds, (U and V sfcWind), maximum near-surface 2 meter temperature (TASMAX), minimum mean-surface 2 meter /media/vedurstofan-utgafa-2017/VI_2017_009.pdf

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