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On the annual cycle over the Atlantic sector: The relative role of land and ocean.

机译:关于大西洋地区的年度周期:陆地和海洋的相对作用。

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摘要

This study investigates how local and remote forcings shape the annual cycle of surface temperature and precipitation in the tropical Atlantic ocean, Africa, and South America.; We use an atmospheric general circulation model with prescribed SST or coupled to a slab ocean model, and prescribe insolation over land and SST—or, in the coupled case, insolation and ocean heat transport convergence (OHTC)—independently of each other. The annual cycle in a simulation in which only one forcing varies annually indicates the importance of that particular forcing for the observed annual cycle. Additional experiments in which we specify the elevated condensational heating in selected regions are used to distinguish between circulations driven by elevated heating and circulations driven by boundary layer processes.; SST determines the location of the maritime ITCZ and influences precipitation in equatorial coastal regions and the Sahel. The circulation generated by the ITCZ elevated heating generates the low-level convergence and precipitation response in the coastal regions. Changes in subtropical SST are advected inland and force changes in sea level pressure, low-level convergence, and precipitation in the Sahel.; The Atlantic ITCZ intensity is modulated by the precipitation intensity in Africa and South America. Reduced land precipitation cools the upper troposphere and enhances the convective available potential energy in the ITCZ region, thereby making precipitation more intense.; In coupled experiments, annual variations in the continental climate impact the position of the Atlantic ITCZ. The annual changes in Saharan surface temperature affect the strength of the northern subtropical Trades, while changes in continental precipitation affect the surface wind in proximity of the ITCZ. Both processes trigger a coupled response in the equatorial Atlantic surface wind, the ITCZ, and the cross-equatorial SST gradient, whose net effect is the meridional displacement of the ITCZ.; It is shown that the annual cycles of precipitation and temperature over the continents are as important as the annual cycle of insolation over the ocean and of OHTC in forcing the annual march of the Atlantic ITCZ seen in the control simulation.
机译:这项研究调查了热带和大西洋,非洲和南美的局部和远程强迫如何影响地表温度和降水的年度循环。我们使用具有规定的SST或耦合至平板海洋模型的大气总环流模型,并规定陆地和SST上的日射量-或在耦合情况下分别规定日射量和海洋热传输收敛(OHTC)-彼此独立。在模拟中,只有一个强制每年变化的年度周期表明,对于观察到的年度周期,该特定强制的重要性。我们在选定的区域中指定了升高的冷凝加热的其他实验被用来区分加热升高的循环和边界层过程驱动的循环。 SST确定了海上ITCZ的位置,并影响了赤道沿海地区和萨赫勒地区的降水。 ITCZ高热产生的循环在沿海地区产生低水平的收敛和降水响应。副热带海温的变化向内陆平移,萨赫勒海平面压力,低层辐合和降水的力变化。大西洋ITCZ强度受非洲和南美的降水强度调节。减少的土地降水使对流层上部变冷,并增加了ITCZ地区对流的可用对流势能,从而使降水更加密集。在耦合实验中,大陆性气候的年度变化会影响大西洋ITCZ的位置。撒哈拉地表温度的年度变化会影响北部亚热带贸易的强度,而大陆降水的变化会影响ITCZ附近的地表风。这两个过程都触发了赤道大西洋表面风,ITCZ和跨赤道SST梯度的耦合响应,其净效应是ITCZ的子午位移。结果表明,在控制模拟中,大陆上的降水和温度的年周期与海洋和OHTC的日照年周期一样,对强迫大西洋ITCZ的年行进同样重要。

著录项

  • 作者

    Biasutti, Michela.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Physics Atmospheric Science.; Geophysics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);地球物理学;
  • 关键词

  • 入库时间 2022-08-17 11:44:49

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