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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Variations in tropical convection as an amplifier of global climate change at the millennial scale
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Variations in tropical convection as an amplifier of global climate change at the millennial scale

机译:热带对流的变化是千年尺度全球气候变化的放大器

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摘要

The global expression of millennial-scale climatic change during the glacial period and the persistence of this signal in Holocene records point to atmospheric teleconnections as the mechanism propagating rapid climate variations. We suggest rearrangements in the tropical convection system globally affected the concentration and location of atmospheric water vapour and modulated terrestrial and marine emissions of CH4 and N2O, providing a tropical mechanism of amplifying and perpetuating millennial-scale climate changes. A multi-proxy reconstruction reflecting various aspects of the intensity of the Arabian Sea Summer Monsoon shows strong millennial-scale variability over the past 90 kyr in which low intensity is associated with a southern shift of the Intertropical Convergence Zone (ITCZ) and an eastward shift in the equatorial convergence zone. The monsoon reconstruction, which is based on new data from a Somali margin sediment core, is supported by previously reported tropical paleoclimatic records and suggests that global scale millennial climatic variability is in part driven by modulations in the tropical hydrological cycle and tropical emissions of the greenhouse gases CH4 and N2O. (c) 2005 Elsevier B.V. All rights reserved.
机译:冰川期全球千禧年尺度气候变化的全球表达以及这一信号在全新世记录中的持续存在,表明大气遥相关是传播快速气候变化的机制。我们建议全球范围内热带对流系统的重排会影响大气水蒸气的浓度和位置,并影响陆地和海洋中CH4和N2O的排放,这是一种热带机制,可以放大并延续千禧年尺度的气候变化。反映阿拉伯海夏季风强度各个方面的多代理重建显示,过去90年来,千年强度存在很大的变化,其中低强度与热带辐合带的南移和东移有关在赤道收敛带。季风重建基于索马里边缘沉积物核心的新数据,得到先前报道的热带古气候记录的支持,并表明全球规模的千年气候变率部分受热带水文循环和温室大棚排放量调节的驱动气体CH4和N2O。 (c)2005 Elsevier B.V.保留所有权利。

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