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Paleoclimate Modelling at the Institute of Atmospheric Physics, Chinese Academy of Sciences

机译:中国科学院大气物理研究所古气候模拟

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Paleoclimate modelling is one of the core topics in the Past Global Changes project under the International Geosphere-Biosphere Programme and has received much attention worldwide in recent decades. Here we summarize the research on the Paleoclimate modeling, including the Holocene, Last Glacial Maximum, and pre-Quaternary climate intervals or events performed at the Institute of Atmospheric Physics under the Chinese Academy of Sciences (IAP/CAS) for over one decade. As an attempt to review these academic activities, we emphasize that vegetation and ocean feedbacks can amplify East Asian climate response to the Earth's orbital parameters and atmospheric CO_2 concentration at the mid-Holocene. At the Last Glacial Maximum, additional cooling in interior China is caused by the feedback effects of East Asian vegetation and the ice sheet over the Tibetan Plateau, and the regional climate model RegCM2 generally reduces data-model discrepancies in East Asia. The simulated mid-Pliocene climate is characterized by warmer and drier conditions as well as significantly weakened summer and winter monsoon systems in interior China. On a tectonic timescale, both the Tibetan Plateau uplift and the Paratethys Sea retreat play important roles in the formation of East Asian monsoon-dominant environmental pattern during the Cenozoic.
机译:古气候模拟是国际地圈-生物圈计划下的“过去全球变化”项目的核心主题之一,并且在最近几十年中受到了全世界的广泛关注。在这里,我们总结了古气候模型的研究,包括全新世,上一次冰期最大值和第四纪前气候间隔或在中国科学院大气物理研究所(IAP / CAS)进行的十年以上的事件。为了回顾这些学术活动,我们强调植被和海洋反馈可以放大东新中中期对地球轨道参数和大气CO_2浓度的东亚气候响应。在最后一次冰川最大值时,中国内陆的额外冷却是由东亚植被和青藏高原上的冰原的反馈作用引起的,区域气候模型RegCM2通常会减少东亚的数据模型差异。模拟的上新世中期气候特征是气候变暖和干燥,中国大陆的夏季和冬季季风系统明显减弱。在构造时间尺度上,青藏高原隆升和Paratethys海退缩都在新生代东亚季风主导型环境格局的形成中发挥重要作用。

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