6533b831fe1ef96bd12984d9

RESEARCH PRODUCT

Regional climate model simulations for Europe at 6 and 0.2 k BP: sensitivity to changes in anthropogenic deforestation

Benjamin SmithMihkel KangurRalph FyfeMałgorzata LatałowaThomas GieseckeSebastian WagnerAnne E. BjuneBasil A. S. DavisHeikki SeppäAnne Birgitte NielsenLaimdota KalninaHarry John Betteley BirksErik KjellströmShinya SugitaA.k TrondmanPetr KunešAchille MauriMarie-josé GaillardUlla KokfeltJed O. KaplanLaurent MarquerFlorence MazierAnneli PoskaGustav StrandbergW.o. Van Der Knaap

subject

VEGETATION DYNAMICSClimate ResearchLAND-COVER CHANGES:Mathematics and natural scienses: 400::Geosciences: 450::Meteorology: 453 [VDP]lcsh:Environmental protectionStratigraphyeducationPotential natural vegetation580 Plants (Botany)Climate modelKlimatforskningNORTHERN SWEDEN:Matematikk og naturvitenskap: 400::Geofag: 450::Meteorologi: 453 [VDP]lcsh:Environmental pollutionDeforestationEvapotranspirationlcsh:TD169-171.8anthropogenic deforestationlcsh:Environmental sciencesHolocene1172 Environmental sciencesddc:910HOLOCENE CLIMATElcsh:GE1-350Global and Planetary ChangeLand useHolocene:Mathematics and natural scienses: 400::Zoology and botany: 480::Vegetation history: 495 [VDP]IBERIAN PENINSULAPaleontologyVegetation[SHS.GEO]Humanities and Social Sciences/Geography15. Life on landAlbedoLAKE-LEVEL FLUCTUATIONSEuropeLAST GLACIAL MAXIMUMRegional climate; deforestation; Europe13. Climate actionPOLLEN DATAClimatologylcsh:TD172-193.5[SDE]Environmental SciencesSURFACE CLIMATEBALTIC SEAClimate model:Matematikk og naturvitenskap: 400::Zoologiske og botaniske fag: 480::Vegetasjonshistorie: 495 [VDP]

description

International audience; This study aims to evaluate the direct effects of anthropogenic deforestation on simulated climate at two contrasting periods in the Holocene, ∼ 6 and ∼ 0.2 k BP in Eu-rope. We apply the Rossby Centre regional climate model RCA3, a regional climate model with 50 km spatial resolution, for both time periods, considering three alternative descriptions of the past vegetation: (i) potential natural vegetation (V) simulated by the dynamic vegetation model LPJ-GUESS, (ii) potential vegetation with anthro-pogenic land use (deforestation) from the HYDE3.1 (History Database of the Global Environment) scenario (V + H3.1), and (iii) potential vegetation with anthropogenic land use Published by Copernicus Publications on behalf of the European Geosciences Union. 662 G. Strandberg et al.: Sensitivity to changes in anthropogenic deforestation from the KK10 scenario (V + KK10). The climate model results show that the simulated effects of deforestation depend on both local/regional climate and vegetation characteristics. At ∼ 6 k BP the extent of simulated deforestation in Europe is generally small, but there are areas where deforestation is large enough to produce significant differences in summer temperatures of 0.5–1 • C. At ∼ 0.2 k BP, extensive deforestation , particularly according to the KK10 model, leads to significant temperature differences in large parts of Europe in both winter and summer. In winter, deforestation leads to lower temperatures because of the differences in albedo between forested and unforested areas, particularly in the snow-covered regions. In summer, deforestation leads to higher temperatures in central and eastern Europe because evapotranspiration from unforested areas is lower than from forests. Summer evaporation is already limited in the south-ernmost parts of Europe under potential vegetation conditions and, therefore, cannot become much lower. Accordingly , the albedo effect dominates in southern Europe also in summer, which implies that deforestation causes a decrease in temperatures. Differences in summer temperature due to deforestation range from −1 • C in southwestern Europe to +1 • C in eastern Europe. The choice of anthropogenic land-cover scenario has a significant influence on the simulated climate, but uncertainties in palaeoclimate proxy data for the two time periods do not allow for a definitive discrimination among climate model results.

10.5194/cp-10-661-2014https://hal.archives-ouvertes.fr/hal-01171786/file/cp-10-661-2014.pdf