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首页> 外文期刊>Journal of Climate >Winter-to-spring transition in East Asia: a planetary-scale perspective of the south China spring rain onset.
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Winter-to-spring transition in East Asia: a planetary-scale perspective of the south China spring rain onset.

机译:东亚的冬春季过渡:从华南春季降雨开始的行星尺度视角。

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摘要

Analysis of observations from 1979 to 2002 shows that the seasonal transition from winter to spring in East Asia is marked with a distinctive event - the onset of the south China spring rain (SCSR). In late February, the reduced thermal contrast between ocean and land leads to weakening of the Asian winter monsoon as well as the Siberian high and the Aleutian low. Meanwhile, convection over Australia and the western Pacific Maritime Continent is suppressed on the passage of the dry phase of a Madden-Julian oscillation (MJO). In conjunction with the seasonal march of monsoon circulation in the Indonesian-Australian sector, this MJO passage weakens the local thermally direct cell in the East Asia-Australia sector. This development is further accompanied by a series of adjustments in both the tropics and midlatitudes. These changes include attenuation of the planetary stationary wave, considerable weakening of the westerly jet stream over much of the central Pacific adjacent to Japan, and reduction of baroclinicity near the East Asian trough. The influence of concurrent local processes in midlatitudes on the SCSR onset is also important. The weakened jet stream is associated with confinement of frontal activities to the coastal regions of East Asia as well as with rapid expansion of the subtropical Pacific high from the eastern Pacific to the western Pacific. A parallel analysis using output from an experiment with a GFDL-coupled GCM shows that the above sequence of circulation changes is well simulated in that model.
机译:对1979年至2002年观测资料的分析表明,东亚从冬季到春季的季节性变化具有显着特征-华南春季降雨(SCSR)的出现。 2月下旬,海洋和陆地之间的热反差减弱,导致亚洲冬季风以及西伯利亚高压和阿留申低压降低。同时,随着Madden-Julian振荡(MJO)的干旱阶段的过去,澳大利亚和西太平洋海域的对流受到抑制。结合印尼-澳大利亚地区季风环流的季节性行进,这种MJO通道削弱了东亚-澳大利亚地区的局部热直接单元。这一发展还伴随着热带和中纬度地区的一系列调整。这些变化包括行星固定波的衰减,与日本毗邻的太平洋中部大部分地区的西风急流减弱以及东亚海槽附近的斜压下降。中纬度地区同时发生的局部过程对SCSR发作的影响也很重要。射流的减弱与锋线活动仅限于东亚沿海地区以及亚热带太平洋高压从东太平洋到西太平洋的快速扩张有关。使用来自GFDL耦合GCM的实验的输出进行的并行分析显示,在该模型中可以很好地模拟上述循环变化的顺序。

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