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  • 51. VI_2016_006_rs

    ............................................................................................... 57 Appendices I Figures ....................................................................................................... 61 II Maps .......................................................................................................... 64 8 1 Introduction The settlement in Seyðisfjörður is endangered by snow avalanches and landslides that have /media/vedurstofan-utgafa-2016/VI_2016_006_rs.pdf
  • 52. Manadargildi.html

    Svartárkot Haganes Reykjahlíð Staðarhóll Skógargerði Húsavík Mánárbakki Garður Ásbyrgi Herðubreiðalindir Möðrudalur Grímsstaðir Raufarhöfn Sigurðarstaðir Höskuldarnes Raufarhöfn Sauðanes Skoruvík Miðfjarðarnes Þorvaldsstaðir Strandhöfn Vopnafjörður Skjaldþingsstaðir Hof í Vopnafirði Þorbrandsstaðir Fagridalur Brú á Jökuldal I Dratthalastaðir Gunnhildargerði Svínafell Egilsstaðir Grímsárvirkjun /Medaltalstoflur-txt/Manadargildi.html
  • 53. norsem_atakan_norway

    and sustainable society. The main vision of the European Plate Observing System (EPOS) is to address the three basic challenges in Earth Sciences: (i) unravelling the Earth's deformational processes which are part of the Earth system evolution in time, (ii) understanding the geo-hazards and their implications to society, and (iii) contributing to the safe and sustainable use of geo /media/norsem/norsem_atakan_norway.pdf
  • 54. VI_2015_007

    ...................................................................................... 30 7 References .................................................................................................. 31 Appendix I - Identification of homogeneous groups of catchments obtained with the ROI technique and associated growth curves .............................................. 33 Appendix II - WaSiM daily flow simulations: Best run verification for the cali- bration /media/vedurstofan/utgafa/skyrslur/2015/VI_2015_007.pdf
  • 55. Reykholt-abstracts

    of the cryosphere Reykholt, Iceland, June 20–21, 2013 4 Sessions Thursday, June 20 09:00‒09:10 ‒ Welcome 09:10‒10:30 ‒ Lidar measurements for glacier inventories and mass balance monitoring 11:00‒12:30 ‒ Process studies - I 13:30‒15:00 ‒ Process studies - II 15:30‒17:30 ‒ Lidar measurements from space, incl. video discussion with input from NASA/USA 18:30‒20:00 ‒ Workshop dinner /media/vatnafar/joklar/Reykholt-abstracts.pdf
  • 56. VI_2020_004

    ....................................................................................... 99 APPENDIX I. Daily tephra dispersal simulation .................................................................... 102 APPENDIX II. HEKLA 1980 – The likelihood of receiving tephra at different locations .... 104 APPENDIX III. KATLA 1918 – The likelihood of receiving tephra at different locations ... 107 APPENDIX IV. ÖRÆFAJÖKULL 1362 /media/vedurstofan-utgafa-2020/VI_2020_004.pdf
  • 57. Lettenmaier_Dennis_CES_2010pdf

    Withdrawal Reliability Grand Coulee Recreation Reliability R e l i a b i l i t y ( % , m o n t h l y b a s e d ) Control Period 1 Period 2 Period 3 RCM 2040-2069 60 80 100 120 140 Firm Hydropower Annual Flow Deficit at McNary P e r c e n t o f C o n t r o l R u n C l i m a t e PCM Control Climate and Current Operations PCM Projected Climate and Current Operations PCM Projected /media/ces/Lettenmaier_Dennis_CES_2010pdf.pdf
  • 58. ECONOMIC_EFFECTS_OF_CLIMATE_CHANGE_ON_THE_TOURISM_SECTOR_IN_SPAIN

    /lexuriserv/lexuriserv.do?uri=com:2007:0002:FIN:EN:PDF, 13 April 2009. [2] WTO, World Tourism Organization (2008): “Climate Change and Tourism - Responding to Global Challenges”, UNWTO, 9 July 2008, Madrid, Spain. Available at: http://www.unwto.org/media/news/en/press_det.php?id=1411&idioma=E, 7 March 2010. [3] Mooney, J.E. y Miller, M.L. (2009): “Climate change: Creating demand for sustainable /media/loftslag/ECONOMIC_EFFECTS_OF_CLIMATE_CHANGE_ON_THE_TOURISM_SECTOR_IN_SPAIN.pdf
  • 59. Kurpniece_Liga_CES_2010

    and corrected data -5 0 5 10 15 1 . 0 1 . 5 2 . 0 2 . 5 3 . 0 3 . 5 Temperature,°C P r e c i p i t a t i o n , m m / d a y Jan Feb Mar Apr May Jun JulAug Sep OctNov Dec Year obs ALUKSNE DMI 1961-1990 ALUKSNE mod DMI 1961-1990 ALUKSNE JanFeb Mar Apr May Jun Jul AugSep Oct Nov Dec Year Jan Feb ar Apr May Jun Jul Aug Sep Nov Dec ear After the correction all 3 climate models agree with observed data /media/ces/Kurpniece_Liga_CES_2010.pdf
  • 60. Lawrence_Deborah_CES_2010

    ECHAM4/OPYC3 NorClim/HIRHAM 25x25 km 'Empirical Adjustment' to 1 x 1 km 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 1 10 100 1000 Return period (years) P e a k d a i l y d i s c h a r g e ( m 3 / s ) 1981-2010 GEV from annual max series 2021-2050 GEV from annual max series 2021 - 2050 Annual maximum series 1981 - 2010 Annual maximum series 1981-2010 200-year flood 2021 /media/ces/Lawrence_Deborah_CES_2010.pdf

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