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  • 1. programme2---PhD-Workshop-preceding-Adaptation-Research-Conference

    During the conference all of you are requested to act as rapporteur in two or three sessions. A preliminary allocation of rapporteur sessions has been made (see below), while accounting for your expertise in certain areas. Participants can suggest changes in the rapporteur session allocation, on the condition a convincing argumentation is provided as well as a confirmed alternative rapporteur /media/loftslag/programme2---PhD-Workshop-preceding-Adaptation-Research-Conference.pdf
  • 2. Traffc-maintenance_expenditures

    229 1 587 160 1970 18 591 42 413 2 166 86 101 - 892 5 131 2 310 201 - - - 157 805 1 652 904 1969 17 559 38 840 2 313 93 776 - 922 4 562 1 571 - - - - 159 543 1 832 354 1968 13 474 36 376 3 074 104 519 - 1 080 4 131 1 156 - - - - 163 811 1 964 368 1967 11 139 34 495 5 940 95 857 - 419 3 032 1 087 - - - - 151 968 1 936 249 1966 9 835 32 581 8 349 94 777 - 587 4 205 1 743 - - - - 152 077 2 032 936 /media/loftslag/Traffc-maintenance_expenditures.pdf
  • 3. Bio Energy

    and climate scenarios for Finland. Biomass and Bioenergy 32: 934-943. Other international Alam, A., Kilpeläinen, A. and Kellomäki, S. (2010). Climate change and mitigation options in a boreal ecosystem with implication for forest management practices. XXIII IUFRO World Congress - Forests for the Future: Sustaining Society and the Environment. 23.8. ? 28.8.2010, Seoul, Republic of Korea /ces/publications/nr/1939
  • 4. Bio Energy

    Assessment of potential production of forest biomass for energy . Assessment of the risks of the production of forest biomass for energy. Assessment and development of forest management regimes to produce forest biomass along with timber to substitute fossil fuels and to mitigate climate change. For further information, contact Prof. Seppo Kellomäki (Co-ordinator) Ashraful Alam (Researcher /ces/project/bio_energy/
  • 5. Future Climate and Renewable Energy - Impacts, Risks and Adaptation 31 May - 2 June Presentations

    system in 2020 - Impacts from changing climatic conditions Claude Demers Impacts and adaptation of the hydroelectric industry in the province of Québec, Canada Úlfar Linnet Hydropower in Iceland: Impacts and adaptation in future climate Ashraful Alam Forest biomass for energy production - potentials, management and risks under climate change Dougal Burnett Climate change and the UK solar /ces/publications/nr/2016
  • 6. ces-oslo2010_proceedings

    change over the North Atlantic and in some simulations also for Iceland. In all areas, including the North Atlantic and Iceland, a clear climate change signal compared to the spread between the simulations is seen. The standard deviation calculated from 17 of the simulations are less than 1°C in all areas apart from Iceland where it reaches between 1 and 2°C and in parts of the Barents Sea where /media/ces/ces-oslo2010_proceedings.pdf
  • 7. VI_2013_006

    stability, e.g. CAPE, in global numerical weather prediction models to mask out potential thunderstorm areas. Such a global system might be useful to monitor large areas of poorly monitored volcanoes, e.g. the chain of volcanoes in the Aleutian Islands, with its heavy air-traffic above. Conclusions An automatic monitoring system has been developed that estimates eruption site location based /media/vedurstofan/utgafa/skyrslur/2013/VI_2013_006.pdf
  • 8. CES_BioFuels_Flyer_new

    Participants and organization of project For queries, please contact to: Prof. Seppo Kellomäki (Co-ordinator) Ashraful Alam (Researcher) Faculty of Forest Sciences University of Joensuu P.O. Box 111, FI-80101 Joensuu, Finland. Email: firstname.lastname@joensuu.fi Bioenergy production potential increased due to the climate change both in energy wood thinnings and in final fellings (FF). In addition /media/ces/CES_BioFuels_Flyer_new.pdf
  • 9. Alam_Ashraful_CES_2010

    biomass at EBT and FF in Finland Management regimes Current c mate C mate c ange EBT FF Total EBT FF Total TWh yr-1 % TWh yr-1 % M0 (0%) 8.7 40.4 49.1 -- 17.8 67.5 85.4 -- M1 (+15%) 8.7 43.9 52.6 7 18.1 72.8 90.9 7 M2 (+30%) 8.4 46.4 54.8 12 18.4 76.4 94.8 11 M3 (+45%) 8.1 48.7 56.8 16 19.0 80.3 99.3 16 a l a r e a ( m 2 h a - 1 ) Basal area just before thinning Remaining basal area threshold /media/ces/Alam_Ashraful_CES_2010.pdf
  • 10. Henriksen_Barlebo-2008-AWM_BBN-Journ_Env_Management

    the body of knowledge in any given area by mapping out cause-and-effect relationships among key variables and encoding them with numbers that represent the extent to which one variable is likely to affect another (Jensen, 2002). Factors, associations and probabilities can be adjusted and validated and BNs are powerful for integrating data and knowledge from different sources and domains, e.g /media/loftslag/Henriksen_Barlebo-2008-AWM_BBN-Journ_Env_Management.pdf

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