首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Distinct responses of East Asian and Indian summer monsoons to astronomical insolation during Marine Isotope Stages 5c and 5e
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Distinct responses of East Asian and Indian summer monsoons to astronomical insolation during Marine Isotope Stages 5c and 5e

机译:在海洋同位素阶段5C和5E期间,东亚和印度夏季季风对天文缺失的独特反应

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摘要

Loess and stalagmite records in China show different responses of Asian monsoon to the astronomical insolation during Marine Isotope Stage (MIS) 5c and 5e, raising the question whether the amplitudes of the whole Asian monsoon are linearly controlled by the astronomical summer insolation changes and whether the regional differences exist. In this study, a set of numerical experiments are conducted for these stages to examine the sensitivity of Asian summer monsoon to changes in the astronomical parameters. The results highlight a complicated response changing with regions and signals. The East Asian monsoon is remarkably stronger during MIS 5e, which is characterized by southerly winds, primarily due to the anomalous anticyclone over northwestern Pacific. The intensified East Asian monsoon leads to less precipitation in the eastern China and Japan but more in the further north and northwest. However, the Indian monsoon circulation does not vary significantly while the precipitation over Arabian Sea is significantly promoted by the upward air motion. Change in water vapor sources of Indian and Pacific Oceans qualitatively explains the observed differences in stalagmite 8180 records, implying that these proxy changes are primarily controlled by the water vapor delivery from oceans, at least on the astronomical timescale.
机译:中国的黄土和石笋记录显示了亚洲季风对天文术期间的不同反应,在海洋同位素阶段(MIS)5C和5E中,提出了整个亚洲季风的幅度是通过天文夏季缺失的改变线性控制的问题,以及是否存在区域差异。在该研究中,对这些阶段进行了一组数值实验,以检查亚洲夏季季风对天文参数变化的敏感性。结果突出了与地区和信号变化的复杂响应。东亚季风在MIS 5E期间非常强烈,其特征在于南北太平洋西北地区的异常抗气旋。加剧的东亚季风在中国东部和日本的降水量较少,但在北部和西北部的进一步较少。然而,印度季风循环并没有显着变化,而阿拉伯海的降水被上升空气运动显着促进。印度和太平洋的水蒸气源的变化定性地解释了石笋8180记录的观察到的差异,这意味着这些代理变化主要由海洋中的水蒸气输送来控制,至少在天文中的时间尺度。

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