Assessing 20th century climate-vegetation feedbacks of land-use change and natural vegetation dynamics in a fully coupled vegetation-climate model

被引:58
作者
Strengers, Bart J. [1 ]
Mueller, Christoph [1 ]
Schaeffer, Michiel [2 ,3 ]
Haarsma, Reindert J. [4 ]
Severijns, Camiel [4 ]
Gerten, Dieter
Schaphoff, Sibyll
van den Houdt, Roy [1 ]
Oostenrijk, Rineke [1 ]
机构
[1] Netherlands Environm Assessment Agcy PBL, NL-3720 AH Bilthoven, Netherlands
[2] Potsdam Inst Climate Impact Res PIK, Climate Analyt GmbH, D-14412 Potsdam, Germany
[3] Wageningen Univ & Res Ctr WUR, Environm Syst Anal Grp, NL-6700 AA Wageningen, Netherlands
[4] Royal Netherlands Meteorol Inst KNMI, NL-3730 AE De Bilt, Netherlands
关键词
climate-vegetation feedbacks; land-use change; dynamic vegetation; model coupling; climate model; dynamic global vegetation model; COVER CHANGE; COMMUNITY LAND; TROPICAL DEFORESTATION; ATMOSPHERIC RESPONSE; STOMATAL CONDUCTANCE; CARBON; VARIABILITY; ATLANTIC; MONSOON; IMPACTS;
D O I
10.1002/joc.2132
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
This study describes the coupling of the dynamic global vegetation model (DGVM), Lund-Potsdam-Jena Model for managed land (LPJmL), with the general circulation model (GCM), Simplified Parameterizations primitivE Equation DYnamics model (SPEEDY), to study the feedbacks between land-use change and natural vegetation dynamics and climate during the 20th century. We show that anthropogenic land-use change had a stronger effect on climate than the natural vegetation's response to climate change (e.g. boreal greening). Changes in surface albedo are an important driver of the climate's response; but, especially in the (sub) tropics, changes in evapotranspiration and the corresponding changes in latent heat flux and cloud formation can be of equal importance in the opposite direction. Our study emphasizes that implementing dynamic vegetation into climate models is essential, especially at regional scales: the dynamic response of natural vegetation significantly alters the climate change that is driven by increased atmospheric greenhouse gas concentrations and anthropogenic land-use change. Copyright (C) 2010 Royal Meteorological Society
引用
收藏
页码:2055 / 2065
页数:11
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