1979 - 2022年对流层大气环流趋势

A. Simmons
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引用次数: 11

摘要

摘要利用ERA5再分析分析了1979年3月至2022年2月的大气环流变化。给出了特定区域的线性趋势图和时间序列图。人们的注意力集中在月、季节和年的平均值上,但也考虑了较短时间尺度的变化,包括极端情况。近对流层顶风的变化是主要焦点,但也讨论了整个对流层中温度、风和其他变量的相关变化。除太平洋上空外,副热带和外热带的对流层中高层变暖比热带深处更大。这与热带东风的加强和经向扩张有关,而这在以前很少引起注意。这种变化主要发生在这一时期的前半段。至少在某些季节,几个中纬度和亚热带陆地地区的变暖接近于北极的大幅变暖。冬季,西风在北极上空一般会减弱,而在中纬度北部则会增强,这与仅仅由于北极变暖加剧而导致环流变化的观点相反。北大西洋东部和西欧上空的急流区向南移动。西风带在从热带西太平洋到澳大利亚南部向东南延伸的地区以及南极洲周围的极地急流区加强。北大西洋上空极端急流风增加。净动能也增加,主要与中纬度风暴路径和热带太平洋上空的次月变化有关。有效势能变化较小。在静止长波结构中,位势高度表现出明显的变化模式。北太平洋和南中纬度地区的地表压力增加,北冰洋和南极洲近海的地表压力减少。在ERA5和JRA-55再分析之间以及ERA5和它同化的观测之间进行了一些比较。它们显示出令人放心的一致,但一些地区差异需要进一步调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trends in the tropospheric general circulation from 1979 to 2022
Abstract. Atmospheric general circulation changes from March 1979 to February 2022 are examined using the ERA5 reanalysis. Maps of linear trends and time series for specific areas are presented. Attention is concentrated on monthly, seasonal and annual means, but shorter-timescale variability is also considered, including extremes. Changes in near-tropopause winds are the main focus, but related changes in temperature, wind and other variables throughout the troposphere are discussed. Middle- and upper-tropospheric warming is larger in the subtropics and outer tropics than in the deep tropics, except over the Pacific. This is linked with a strengthening and meridional expansion of the tropical easterlies that has received little previous attention. The change occurs predominantly over the first half of the period. Warming over several mid-latitude and subtropical land areas comes close to matching the large warming of the Arctic, in some seasons at least. Westerly upper-level winds in general weaken over the Arctic in winter but strengthen in northern middle latitudes, contrary to arguments based on circulation changes due solely to amplified Arctic warming. The jet-stream region over the eastern North Atlantic and western Europe shifts southward. Westerlies strengthen in a band stretching south-eastwards from the tropical western Pacific to southern Australia, as well as in the polar-jet-stream region that surrounds Antarctica. Extreme jet-stream winds increase over the North Atlantic. Net kinetic energy also increases, mostly associated with sub-monthly variability along the mid-latitude storm tracks and over the tropical Pacific. Available potential energy changes less. Geopotential height shows a distinct pattern of change in stationary long-wave structures. There are increases in surface pressure over the North Pacific and southern mid-latitudes and decreases over the Arctic Ocean and offshore of Antarctica. Several comparisons are made between ERA5 and the JRA-55 reanalysis and between ERA5 and the observations it assimilated. They show reassuring agreement, but some regional differences require further investigation.
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