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首页> 外文期刊>Mausam: Journal of the Meteorological Department of India >The Indo-Pacific climate dynamics and teleconnections with a special emphasis on the Indian summer monsoon rainfall
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The Indo-Pacific climate dynamics and teleconnections with a special emphasis on the Indian summer monsoon rainfall

机译:印度夏季季风降雨的特殊重点,印度夏季降雨

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The climate dynamics in the Indo-Pacific sector is dominated by several modes of interannual climate variations. The El Nino/Southern Oscillation (ENSO) is historically recognized as the dominant mode of climate variations in the global climate system. It affects the weather and climate all over the world including Indian summer monsoon rainfall (ISMR) through direct and indirect pathways. Also, the ENSO-induced basin-wide mode of the tropical Indian Ocean is shown to have a delayed effect, like a capacitor, on the climate variations of the western Pacific and the adjacent land regions of Asia. The Indian Ocean Dipole (IOD) is recently recognized to be the other dominant climate mode that has worldwide impacts on weather and climate including ISMR. In addition, perhaps related to the global warming processes, the characteristics of the ENSO have changed in recent decades and a new ocean-atmosphere coupled mode called ENSO Modoki has emerged. The ENSO Modoki signals are seen centered in the central Pacific with opposite polarity signals appearing on both sides of the basin. Different from ENSO, the ENSO Modoki associated teleconnections can be seen in many parts of the world. Besides the tropical climate mode, the Indo-Pacific sector also has subtropical climate modes related to local air-sea interactions. Particularly, the Indian Ocean subtropical dipole (IOSD) is shown to have a significant correlation with the rainfall variability in southern Africa, Australia, India and even southern China. Several modes of coastal air-sea interactions modes are also discovered recently. The most interesting of them is the Ningaloo Nifio/Ningaloo Nina off the western coast of Australia. This coastal Nino has a strong influence not only on the coastal ecosystem but also the regional climate variability in Australia.
机译:印度航空公司的气候动态由几种营制的气候变化占主导地位。 El Nino / Southern振荡(ENSO)在历史上被认为是全球气候系统中的气候变化的主要模式。它影响世界各地的天气和气候,包括印度夏季季风降雨(ISMR)通过直接和间接途径。此外,热带印度洋的ENSO诱导的盆地宽模式被证明是在西太平洋和亚洲邻近地区的气候变化的电容器上具有延迟效应。印度洋偶极(IOD)最近被认为是全球对天气和气候影响的其他主导气候模式,包括ISMR。此外,可能与全球变暖过程有关,近几十年来enso的特征发生了变化,并且出现了一种名为ENSO Modoki的新的海洋气氛耦合模式。在盆地两侧出现的具有相反的极性信号,可以看到ENSO Modoki信号。与ENSO不同,ENSO Modoki相关联的电信连接可以在世界许多地方看到。除热带气候模式外,印度航空部门还拥有与当地海洋相互作用有关的亚热带气候模式。特别是,印度洋亚热带偶极子(IOSD)被证明与南部非洲,澳大利亚,印度甚至中国甚至中国甚至的降雨变异性有着重大相关性。最近也发现了几种沿海海洋互动模式。他们最有趣的是澳大利亚西海岸的Ningaloo Nifio / Ningaloo Nina。这个沿海尼诺不仅对沿海生态系统有着强烈影响,还具有澳大利亚的区域气候变异性。

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