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Dynamical and Thermodynamical Influences of the Maritime Continent on ENSO Evolution

机译:海洋大陆对ENSO演化的动力学和热力学影响

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摘要

El Niño-Southern Oscillation (ENSO) exerts tremendous influences on the global climate. Through dynamic lifting and thermal forcing, the Maritime Continent (MC) plays an important role in affecting global atmospheric circulation. In spite of the extensive studies on ENSO mechanisms, the influence of MC on the characteristics of ENSO life cycle remains unclear. Our coupled model experiments reveal that the absence of the MC land contributes to a strong ENSO asymmetry and a weakened nonlinear atmospheric response to the combined seasonal and interannual SST variations (i.e. the combination mode) that prolongs the warm events, resulting in a reduction of ENSO frequency. On the other hand, our experiments suggest that the global climate model applied (NCAR CESM) overestimates the MC topographic uplifting effect on ENSO simulation. Overall, this study provides a new physical insight into the nature of the MC influence on ENSO evolution.
机译:厄尔尼诺-南方涛动(ENSO)对全球气候产生巨大影响。通过动态提升和热强迫作用,海事大陆(MC)在影响全球大气环流方面发挥着重要作用。尽管对ENSO机制进行了广泛研究,但MC对ENSO生命周期特征的影响仍不清楚。我们的耦合模型实验表明,MC土地的缺失会导致强烈的ENSO不对称性,并减弱对延长的暖事件的季节性和年际SST组合变化(即组合模式)的非线性大气响应,从而导致ENSO降低频率。另一方面,我们的实验表明,应用的全球气候模型(NCAR CESM)高估了MC地形对ENSO模拟的隆升作用。总体而言,这项研究为MC对ENSO演变的影响性质提供了新的物理见解。

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