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首页> 外文期刊>Journal of Climate >Changes in Lake Area in the Inner Mongolian Plateau under Climate Change: The Role of the Atlantic Multidecadal Oscillation and Arctic Sea Ice
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Changes in Lake Area in the Inner Mongolian Plateau under Climate Change: The Role of the Atlantic Multidecadal Oscillation and Arctic Sea Ice

机译:气候变化下内蒙古高原湖区的变化:大西洋多型振荡和北极海冰的作用

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摘要

The lake area in the Inner Mongolian Plateau (IMP) has experienced a rapid reduction in recent decades. Previous studies have highlighted the important role of intensive human activities in IMP lake shrinkage. However, this study found that climate change-induced summer precipitation variations can exert great influences on the IMP lake area variations. The results suggest that the decadal shift in the IMP summer precipitation may be the predominant contributor to lake shrinkage. Further analysis reveals that the Atlantic multidecadal oscillation (AMO) and Arctic sea ice concentration (SIC) play important roles in the IMP summer precipitation variations. The AMO seems to provide beneficial large-scale circulation fields for the decadal variations in the IMP summer precipitation, and the Arctic SIC decline is favorable for weakening the IMP summer precipitation intensity after the late 1990s. Evidence indicates that the vorticity advection related to the Arctic SIC decline can result in the generation of Rossby wave resources in the midlatitudes. Then, the strengthened wave resources become favorable for enhancing the stationary wave propagation across Eurasia and inducing cyclonic circulation over the Mongolia-Baikal regions, which might bring more rainfall northward and weaken the IMP summer precipitation intensity. Consequently, due to the decreased rainfall and gradual warming after the late 1990s, the lake area in the IMP has experienced a downward trend in recent years.
机译:内蒙古高原(IMP)的湖区近几十年经历了迅速减少。以前的研究突出了强化人类活动在Imp湖收缩中的重要作用。然而,这项研究发现,气候变化诱导的夏季降水变化可能对Imp湖区变化产生巨大影响。结果表明,在夏季降水中的二等转变可能是湖萎缩的主要贡献者。进一步的分析表明,大西洋多型振荡(AMO)和北极海冰浓度(SIC)在IMP夏季降水变化中起重要作用。 AMO似乎为IMP夏季降水的二等变化提供了有益的大规模循环场,并且北极SIC下降是有利于在20世纪90年代后期后削弱了避难夏季降水强度。证据表明,与北极SIC下降有关的涡流平流可能导致在中间人中产生罗斯比波浪资源。然后,强化波浪资源对增强欧亚亚洲的静止波传播并在蒙古 - 贝加尔地区诱导旋风循环,这可能会使北方北方的降雨量更多,并削弱不避暑夏季降水强度。因此,由于在20世纪90年代末期后降雨量和逐渐变暖,近年来湖区的湖区经历了下行趋势。

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