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Quantifying changes in spatial patterns of surface air temperature dynamics over several decades

机译:量化几十年来地表空气温度动态变化的空间格局

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We study daily surface air temperature?(SAT) reanalysis in a grid over the Earth's surface to identify and quantify changes in SAT dynamics during the period?1979–2016. By analysing the Hilbert amplitude and frequency we identify the regions where relative variations are most pronounced (larger than ±50?% for the amplitude and ±100?% for the frequency). Amplitude variations are interpreted as due to changes in precipitation or ice melting, while frequency variations are interpreted as due to a northward shift of the inter-tropical convergence zone (ITCZ) and to a widening of the rainfall band in the western Pacific Ocean. The ITCZ is the ascending branch of the Hadley cell, and thus by affecting the tropical atmospheric circulation, ITCZ migration has far-reaching climatic consequences. As the methodology proposed here can be applied to many other geophysical time series, our work will stimulate new research that will advance the understanding of climate change impacts.
机译:我们研究了地球表面网格中的每日地面空气温度(SAT)再分析,以识别和量化1979-2016年期间SAT动态的变化。通过分析希尔伯特振幅和频率,我们可以确定相对变化最明显的区域(振幅大于±50%,频率大于±100%)。振幅变化被解释为由于降水或冰融化的变化,而频率变化被解释为由于热带辐合带(ITCZ)向北移动和西太平洋降水带扩大。 ITCZ是Hadley细胞的上升分支,因此,通过影响热带大气环流,ITCZ的迁移具有深远的气候影响。由于此处提出的方法可以应用于许多其他地球物理时间序列,因此我们的工作将激发新的研究,从而促进对气候变化影响的理解。

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