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监测和建模青藏高原的气候系统及其对东亚的影响。

Monitoring and Modeling the Tibetan Plateau's climate system and its impact on East Asia.

机构信息

Key Laboratory of Tibetan Environment Changes and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing 100101, China.

CAS Center for Excellence in Tibetan Plateau Earth Sciences, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Sci Rep. 2017 Mar 13;7:44574. doi: 10.1038/srep44574.

Abstract

The Tibetan Plateau is an important water source in Asia. As the "Third Pole" of the Earth, the Tibetan Plateau has significant dynamic and thermal effects on East Asian climate patterns, the Asian monsoon process and atmospheric circulation in the Northern Hemisphere. However, little systematic knowledge is available regarding the changing climate system of the Tibetan Plateau and the mechanisms underlying its impact on East Asia. This study was based on "water-cryosphere-atmosphere-biology" multi-sphere interactions, primarily considering global climate change in relation to the Tibetan Plateau -East Asia climate system and its mechanisms. This study also analyzed the Tibetan Plateau to clarify global climate change by considering multi-sphere energy and water processes. Additionally, the impacts of climate change in East Asia and the associated impact mechanisms were revealed, and changes in water cycle processes and water conversion mechanisms were studied. The changes in surface thermal anomalies, vegetation, local circulation and the atmospheric heat source on the Tibetan Plateau were studied, specifically, their effects on the East Asian monsoon and energy balance mechanisms. Additionally, the relationships between heating mechanisms and monsoon changes were explored.

摘要

青藏高原是亚洲重要的水源地。作为地球的“第三极”,青藏高原对东亚气候模式、亚洲季风过程和北半球大气环流具有显著的动力和热力影响。然而,对于青藏高原气候变化系统及其对东亚影响的机制,我们知之甚少。本研究基于“水-冰冻圈-大气-生物”多圈层相互作用,主要考虑与青藏高原-东亚气候系统及其机制相关的全球气候变化。本研究还通过考虑多圈层能量和水过程,分析了青藏高原对全球气候变化的影响。此外,揭示了东亚气候变化的影响及其相关的影响机制,研究了水循环过程和水转化机制的变化。研究了青藏高原表面热异常、植被、局地环流和大气热源的变化,特别是它们对东亚季风和能量平衡机制的影响。此外,还探讨了加热机制与季风变化之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ef/5347378/bd274f446353/srep44574-f1.jpg

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