globalchange  > 气候变化事实与影响
DOI: 10.5194/hess-20-3789-2016
Scopus记录号: 2-s2.0-84987750104
论文题名:
Synchrony of trend shifts in Sahel boreal summer rainfall and global oceanic evaporation, 1950–2012
作者: Diawara A; , Tachibana Y; , Oshima K; , Nishikawa H; , Ando Y
刊名: Hydrology and Earth System Sciences
ISSN: 10275606
出版年: 2016
卷: 20, 期:9
起始页码: 3789
结束页码: 3798
语种: 英语
Scopus关键词: Atmospheric movements ; Atmospheric temperature ; Evaporation ; Evaporative cooling systems ; Moisture ; Rain ; Surface waters ; Wind ; Atmospheric moisture ; Evaporative cooling ; Moisture transport ; Northern hemisphere ; Sea surface temperature (SST) ; Southern Hemisphere ; Subtropical ocean ; Summer rainfall ; Oceanography ; Boreal ; evaporation ; Northern Hemisphere ; precipitation assessment ; precipitation intensity ; sea surface temperature ; Southern Hemisphere ; synchrony ; trend analysis ; Sahel [Sub-Saharan Africa]
英文摘要: Between 1950 and 2012, boreal summer (rainy season) rainfall in the Sahel changed from a multi-decadal decreasing trend to an increasing trend (positive trend shift) in the mid-1980s. We found that this trend shift was synchronous with similar trend shifts in global oceanic evaporation and in land precipitation on all continents except the Americas. The trend shift in oceanic evaporation occurred mainly in the Southern Hemisphere (SH) and the subtropical oceans of the Northern Hemisphere (NH). Because increased oceanic evaporation strengthens the atmospheric moisture transport toward land areas, the synchrony of oceanic evaporation and land precipitation is reasonable. Surface scalar winds over the SH oceans also displayed a positive trend shift. Sea surface temperature (SST) displayed a trend shift in the mid-1980s that was negative (increasing, then decreasing) in the SH and positive in the NH. Although SST had opposite trend shifts in both hemispheres, the trend shift in evaporation was positive in both hemispheres. We infer that because strong winds promote evaporative cooling, the trend shift in SH winds strengthened the trend shifts in both SST and evaporation in the SH. Because high SST promotes evaporation, the trend shift in NH SST strengthened the NH trend shift in evaporation. Thus differing oceanic roles in the SH and NH generated the positive trend shift in evaporation; however, the details of moisture transport toward the Sahel are still unclear, or perhaps there is no single determining influence. � Author(s) 2016.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/78733
Appears in Collections:气候变化事实与影响

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作者单位: Weather and Climate Dynamics Division, Mie University, Tsu, Japan; Institute of Arctic Climate and Environment Research, Japan Agency for Marine-Earth Science and Technology, Yokosuka, Japan

Recommended Citation:
Diawara A,, Tachibana Y,, Oshima K,et al. Synchrony of trend shifts in Sahel boreal summer rainfall and global oceanic evaporation, 1950–2012[J]. Hydrology and Earth System Sciences,2016-01-01,20(9)
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