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Selection: with tag no-analog-pattern [4 articles] 


Forest fire danger extremes in Europe under climate change: variability and uncertainty

Keywords: adaptation   array-of-factors   biodiversity   biodiversity-impacts   burnt-area   climate-change   climate-extremes   communicating-uncertainty   data-transformation-modelling   data-uncertainty   downscaling   droughts   dynamic-system   ecosystem-resilience   emergent-property   euro-cordex   europe   extreme-events   extreme-weather   fire-damage   fire-danger-rating   fire-management   fire-weather-index   forest-fires   forest-management   forest-pests   forest-resources   free-scientific-software   geospatial   geospatial-semantic-array-programming   human-behaviour   humidity   ipcc-scenarios   mastrave-modelling-library   mitigation   modelling-uncertainty   no-analog-pattern   peseta-series   precipitation   rcp85   resilience   resilience-vs-resistance   review   robust-modelling   science-policy-interface   science-society-interface   scientific-communication   semantic-array-programming   spatial-pattern   species-richness   species-specific-effects   temperature   vegetation-changes   wildfires   wind  


Forests cover over a third of the total land area of Europe. In recent years, large forest fires have repeatedly affected Europe, in particular the Mediterranean countries. Fire danger is influenced by weather in the short term, and by climate when considering longer time intervals. In this work, the emphasis is on the direct influence on fire danger of weather and climate. [\n] For climate analysis at the continental scale, a daily high-emission scenario (RCP 8.5) was considered up to the end ...


  1. de Rigo, D., Bosco, C., San-Miguel-Ayanz, J., Houston Durrant, T., Barredo, J. I., Strona, G., Caudullo, G., Di Leo, M., Boca, R., 2016. Forest resources in Europe: an integrated perspective on ecosystem services, disturbances and threats. In: San-Miguel-Ayanz, J., de Rigo, D., Caudullo, G., Houston Durrant, T., Mauri, A. (Eds.), European Atlas of Forest Tree Species. Publ. Off. EU, Luxembourg, pp. e015b50+. .
  2. Alberdi Asensio, I., Baycheva-Merger, T., Bouvet, A., Bozzano,

Ecology and the ratchet of events: climate variability, niche dimensions, and species distributions

Proceedings of the National Academy of Sciences, Vol. 106, No. Supplement 2. (17 November 2009), pp. 19685-19692,


Climate change in the coming centuries will be characterized by interannual, decadal, and multidecadal fluctuations superimposed on anthropogenic trends. Predicting ecological and biogeographic responses to these changes constitutes an immense challenge for ecologists. Perspectives from climatic and ecological history indicate that responses will be laden with contingencies, resulting from episodic climatic events interacting with demographic and colonization events. This effect is compounded by the dependency of environmental sensitivity upon life-stage for many species. Climate variables often used in empirical niche models ...


Multiple dimensions of climate change and their implications for biodiversity

Science, Vol. 344, No. 6183. (01 May 2014), pp. 1247579-1247579,


[Structured Abstract] [::Background] Changes in Earth’s climate over time can be measured in many ways. The different metrics available represent alternative dimensions of climate change, each with distinct implications for biodiversity conservation and other sectors. However, this diversity is rarely recognized. At any given locality, average temperature or precipitation can increase or decrease, extreme values can become more intense or frequent, and the timing of specific climatic events can shift. At the same time, climatic conditions are redistributed at broader spatial extents. Across ...


Novel climates, no-analog communities, and ecological surprises

Frontiers in Ecology and the Environment, Vol. 5, No. 9. (November 2007), pp. 475-482,


No-analog communities (communities that are compositionally unlike any found today) occurred frequently in the past and will develop in the greenhouse world of the future. The well documented no-analog plant communities of late-glacial North America are closely linked to “novel” climates also lacking modern analogs, characterized by high seasonality of temperature. In climate simulations for the Intergovernmental Panel on Climate Change A2 and B1 emission scenarios, novel climates arise by 2100 AD, primarily in tropical and subtropical regions. These future novel ...

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