Soil Moisture;
Summer Dryness;
Radiative Forcings;
Sulfate Aerosol;
Control Integration;
D O I:
暂无
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摘要:
This study investigates the temporal and spatial variation of soil moisture associated with global warming as simulated by long-term integrations of a coupled ocean-atmosphere model conducted earlier. Starting from year 1765, integrations of the coupled model for 300 years were performed for three scenarios: increasing greenhouse gases only, increasing sulfate-aerosol loading only and the combination of both radiative forcings. The integration with the combined radiative forcings reproduces approximately the observed increases of global mean surface air temperature during the 20th century. Analysis of this integration indicates that both summer dryness and winter wetness occur in middle-to-high latitudes of North America and southern Europe. These features were identified in earlier studies. However, in the southern part of North America where the percentage reduction of soil moisture during summer is quite large, soil moisture is decreased for nearly the entire annual cycle in response to greenhouse warming. A similar observation applies to other semi-arid regions in subtropical to middle latitudes such as central Asia and the area surrounding the Mediterranean Sea. On the other hand, annual mean runoff is greatly increased in high latitudes because of increased poleward transport of moisture in the warmer model atmosphere. An analysis of the central North American and southern European regions indicates that the time when the change of soil moisture exceeds one standard deviation about the control integration occurs considerably later than that of surface air temperature for a given experiment because the ratio of forced change to natural variability is much smaller for soil moisture compared with temperature. The corresponding lag time for runoff change is even greater than that of either precipitation or soil moisture for the same reason. Also according to the above criterion, the inclusion of the effect of sulfate aerosols in the greenhouse warming experiment delays the noticeable change of soil moisture by several decades. It appears that observed surface air temperature is a better indicator of greenhouse warming than hydrologic quantities such as precipitation, runoff and soil moisture. Therefore, we are unlikely to notice definitive CO2-induced continental summer dryness until several decades into the 21st century.
机构:
CSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Physical Oceanography Laboratory, Qingdao Collaborative Innovation Center of Marine Science and Technology, Ocean University of China, QingdaoCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Cai W.
Santoso A.
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机构:
Australian Research Council (ARC), Centre of Excellence for Climate System Science, University of New South Wales, SydneyCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Santoso A.
Wang G.
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机构:
CSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VICCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Wang G.
Yeh S.-W.
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机构:
Department of Environmental Marine Science, Hanyang University, AnsanCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Yeh S.-W.
An S.-I.
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机构:
Department of Atmospheric Sciences, Yonsei University, SeoulCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
An S.-I.
Cobb K.M.
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h-index: 0
机构:
School of Earth and Atmospheric Sciences, Georgia Institute of Technology, 311 Ferst Drive, AtlantaCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Cobb K.M.
Collins M.
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机构:
College of Engineering Mathematics and Physical Sciences, Streatham Campus, University of Exeter, ExeterCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Collins M.
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机构:
Guilyardi E.
Jin F.-F.
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机构:
Department of Meteorology, SOEST, University of Hawaii, Honolulu, 96822, HICSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Jin F.-F.
Kug J.-S.
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机构:
School of Environmental Science and Engineering, Pohang University of Science and Technology, PohangCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Kug J.-S.
Lengaigne M.
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机构:
Laboratoire d'Océanographie et du Climat: Expérimentation et Approches Numériques (LOCEAN), IRD/UPMC/CNRS/MNHNCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
机构:
Atmosphere and Ocean Research Institute, University of Tokyo, KashiwaCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
Watanabe M.
Wu L.
论文数: 0引用数: 0
h-index: 0
机构:
Physical Oceanography Laboratory, Qingdao Collaborative Innovation Center of Marine Science and Technology, Ocean University of China, QingdaoCSIRO Oceans and Atmosphere Flagship, Aspendale, 3195, VIC
机构:
Univ New S Wales, Australian Res Council, Ctr Excellence Climate Syst Sci, Sydney, NSW 2052, Australia
Univ New S Wales, Climate Change Res Ctr, Sydney, NSW 2052, AustraliaCSIRO Oceans & Atmosphere Flagship, Aspendale, Vic 3195, Australia