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浅述低纬过程在全球气候变化中的重要性

本站小编 Free考研考试/2022-01-03

徐建,
刘珺,
陈漪馨,
孙金梁
西北大学地质学系大陆动力学国家重点实验室, 陕西 西安 710069

基金项目: 国家自然科学基金项目(批准号:41830539、41776060和41576045)和西北大学地质学系大学生创新基金项目(批准号:XDCX2019-09)共同资助


详细信息
作者简介: 徐建, 男, 42岁, 教授, 古海洋学专业, E-mail:jx08@live.cn
中图分类号: P72;P532

收稿日期:2020-01-02
修回日期:2020-03-12
刊出日期:2020-05-30



Brief notes on significance of low-latitude processes in global climate change

Xu Jian,
Liu Jun,
Chen Yixin,
Sun Jinliang
State Key Laboratory of Continental Dynamics and Department of Geology, Northwest University, Xi'an 710069, Shaanxi



MSC: P72;P532

--> Received Date: 02 January 2020
Revised Date: 12 March 2020
Publish Date: 30 May 2020


摘要
文章浅略叙述第四纪冰期旋回中气候变化的高纬驱动和大气CO2驱动机制,然后尝试追本溯源探讨地球表面能量的再分配过程中能量载体的属性和能量迁移的过程,以窥气候变化中各种因素的重要性。由于水的特殊属性(水汽的温室效应、三相转换的能量迁移、物质特别是盐度输送的载体),以及在低纬海区的强烈活跃性,结合古海洋和古气候记录,显示低纬地区在气候系统中扮演着太阳能量到达地球表面主要"集散地"的角色,低纬过程可能在南北两半球的中-低纬间起到类似气候"跷跷板"支点的作用。
高纬驱动/
大气CO2浓度/
低纬过程/
"跷跷板"支点

This article carries brief notes on high-latitude and atmospheric CO2 forcings and the role of low-latitude processes on climate change during Quaternary glacial cycles. It aims to get clues on significance of various factors that influence Earth's climate by investigating properties of energy carriers and process of energy shifting during redistribution of energy on the Earth surface. Among energy carriers, water stands out by its distinctiveness in potent greenhouse effect of water vapor and carrying materials including salinity, besides shifting energy during transforming among water phases. Low-latitudes provides water a vast stage than higher latitudes involving such like receiving much more solar insolation, more intense sea-air exchange and more robust both oceanic and atmospheric circulation and thus shall have its great significance in Earth climate system, possibly as a main 'distributing center' of solar energy to the Earth surface. By investigating proxy records of past ocean and climate, this article proposes that low-latitude processes may act as the fulcrum to the 'seesaw'-like pattern of climate change between mid-to-low latitudes of two hemispheres.
high-latitude forcing/
atmospheric CO2 concentration/
low-latitude processes/
fulcrum of 'seesaw'-like pattern



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