Arid
DOI10.2478/s11756-006-0164-z
Quantifying the biologically possible range of steady-state soil and surface climates with climate model simulations
Kleidon, Axel
通讯作者Kleidon, Axel
来源期刊BIOLOGIA
ISSN0006-3088
出版年2006
卷号61页码:S234-S239
英文摘要

The terrestrial biosphere shapes the exchange fluxes of energy and mass at the land surface. The diversity of plant form and functioning can potentially result in a wide variety of possible climatic conditions at the land surface and in the soil, which in turn feed back to more or less suitable conditions for terrestrial productivity. Here, I use sensitivity simulations to vegetation form and functioning with a global climate model to quantify this possible range of steady-states ("PROSS") of the surface energy- and mass balances. The surface energy- and water balances over land are associated with substantial sensitivity to vegetation parameters, with precipitation varying by more than a factor of 2, and evapotranspiration by a factor of 5. This range in biologically possible climatic conditions is associated with drastically different levels of vegetation productivity. Optimum conditions for maximum productivity axe close to the simulated climate of present-day conditions. These results suggest the conclusions that (a) climate does not determine vegetation form and function, but merely constrains it, and (b) the emergent climatic conditions at the land surface seem to be close to optimal for the functioning of the terrestrial biosphere.


英文关键词atmosphere-biosphere interactions climate feedbacks maximum entropy production vegetation
类型Article ; Proceedings Paper
语种英语
国家USA ; Germany
收录类别SCI-E ; CPCI-S
WOS记录号WOS:000240688500004
WOS关键词MAXIMUM-ENTROPY PRODUCTION ; DESERT WORLD ; GREEN PLANET ; GLOBAL CLIMATE ; CARBON-CYCLE ; ATMOSPHERE ; VEGETATION ; SYSTEM ; THERMODYNAMICS ; EARTH
WOS类目Biology
WOS研究方向Life Sciences & Biomedicine - Other Topics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/150908
作者单位(1)Univ Maryland, Dept Geog, College Pk, MD 20742 USA;(2)Univ Maryland, Earth Syst Sci Interdisciplinary Ctr, College Pk, MD 20742 USA;(3)Max Planck Inst Biogeochem, D-07701 Jena, Germany
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Kleidon, Axel. Quantifying the biologically possible range of steady-state soil and surface climates with climate model simulations[J],2006,61:S234-S239.
APA Kleidon, Axel.(2006).Quantifying the biologically possible range of steady-state soil and surface climates with climate model simulations.BIOLOGIA,61,S234-S239.
MLA Kleidon, Axel."Quantifying the biologically possible range of steady-state soil and surface climates with climate model simulations".BIOLOGIA 61(2006):S234-S239.
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