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首页> 外文期刊>Journal of Climate >Robust Surface Warming in Offshore China Seas and Its Relationship to the East Asian Monsoon Wind Field and Ocean Forcing on Interdecadal Time Scales
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Robust Surface Warming in Offshore China Seas and Its Relationship to the East Asian Monsoon Wind Field and Ocean Forcing on Interdecadal Time Scales

机译:近海中国海域的鲁棒表面变暖及其与东亚季风风野和海洋迫使跨越时鳞的关系

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Robust surface warming with distinct interdecadal variations has been observed in the offshore area of China and adjacent seas (hereafter, offshore China) during winter and summer of the period 1958-2014. Acceleration of this warming during 1980-99 at rates greater than the global mean warming rate was accompanied by a weakening of the East Asian monsoon (EAM) and a strengthening of the west Pacific subtropical high (WPSH). It was determined that the sea surface temperature (SST) variation in offshore China correlates very well with changes in the EAM wind on interdecadal time scales. It was also established that the enhanced oceanic lateral heat transfer, mainly attributed to the leading empirical orthogonal function (EOF1), weakening EAM wind mode, has a central role in robust interdecadal winter surface warming in offshore China. However, except for the effect of oceanic lateral heat transfer, the increased surface heat flux through radiative heating related to the third EOF (EOF3) strengthening EAM anticyclone wind mode (WPSH) in summer appears to have a greater contribution to interdecadal summer surface warming in offshore China. These results help clarify the relationship between interdecadal SST variations, EAM, oceanic currents, and sea surface flux in offshore China.
机译:在1958 - 2014年期间的冬季和夏季,在中国和邻近的海洋(以下近海)在中国和邻近的海洋(以下)的海上地区,已经观察到具有不同跨跨越的变化的鲁棒表面变暖。在1980-99期间加速这一变暖的速度大于全球均衡率的速度伴随着东亚季风(EAM)的弱化和西太平洋亚热带高(WPSH)的加强。确定海上中国的海面温度(SST)变异与截至跨越时尺度的eam风的变化相比非常好。还建立了增强的海洋横向传热,主要归因于领先的经验正交函数(EOF1),弱化OAM风模式,在近海中国的强大冬季表面变暖方面具有核心作用。然而,除了海洋横向传热的影响外,夏季辐射加热通过辐射加热的表面热通量增加,夏季强化射射射流风电局(WPSH)似乎对Interdecadal夏季表面变暖有更大的贡献离岸中国。这些结果有助于澄清近海中国跨越SST变化,EAM,海洋电流和海面通量之间的关系。

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    《Journal of Climate》 |2017年第22期|共19页
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  • 正文语种 eng
  • 中图分类 气候学;
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