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首页> 外文期刊>Journal of Climate >Interannual Variation of Summer Atmospheric Heat Source over the Tibetan Plateau and the Role of Convection around the Western Maritime Continent
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Interannual Variation of Summer Atmospheric Heat Source over the Tibetan Plateau and the Role of Convection around the Western Maritime Continent

机译:藏高高原夏季大气热源的依赖变化及西部海洋大陆对流的作用

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摘要

The impacts of summer atmospheric heat source over the Tibetan Plateau (TP) on regional climate variation have attracted extensive attention. However, few studies have focused on possible causes of the interannual variation of atmospheric heat source over the TP. Total heat (TH) is generally composed of three components: surface sensible heat, latent heat release of condensation (LH), and radiative convergence. In this study, it is found that interannual variation of summer TH is dominated by LH in the central and eastern TP. The atmospheric circulation patterns associated with the TH over the TP in June are different from those in July and August. Large TH is accompanied by a cyclone centered over the South China Sea in June, which is replaced by an anticyclone in July and August. The interannual variation of July-August TH over the central and eastern TP is significantly affected by convection around the western Maritime Continent (WMC) that modulates the LH over the southeastern TP. Enhanced WMC convection induces an anticyclone to the south of the TP, which favors water vapor transport to the southeastern TP and thus an increase in precipitation. Enhanced convection over the southeastern TP may exert a positive feedback on local precipitation through pumping more water vapor from the southern boundary. Both observations and model simulations indicate that the enhanced WMC convection can induce the anticyclone to the south of the TP and convection-circulation is important for maintenance of the anticyclone.
机译:夏季大气热源对地区气候变化对藏高的高原(TP)的影响引起了广泛的关注。然而,很少有研究专注于TP上大气热源依赖变化的可能原因。总热量(TH)通常由三种组分组成:表面明智的热,冷凝(LH)的潜热释放和辐射收敛。在这项研究中,发现夏季TH的续集变异是中央和东部地区的LH。与6月份与TP相关的大气循环模式与7月和8月的TP相关。大Th伴随着6月份以南海以南海为中心的飓风,该旋风由7月和8月在南方的反气旋取代。在中央和东部地区和东部地区的持续变化在西部海洋大陆(WMC)周围的对流受到殖民地东南部地区的LH。增强的WMC对流引发TP的南部的反气旋,其利用水蒸气运输到东南TP,从而增加降水量。通过从南部边界泵送更多的水蒸气,对东南TP的增强对流可能会对局部降水产生积极反馈。两种观察和模型模拟表明增强的WMC对流可以诱导TP南部的反气旋,对流循环对于维持抗气旋的重要性是重要的。

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