近几十年气候变化导致的中流层温度变化(1960-2024年)

IF 0.4 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
I. I. Mokhov, V. I. Perminov, I. A. Fomina
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引用次数: 0

摘要

本文介绍了1960-2024年俄罗斯科学院Obukhov大气物理研究所Zvenigorod科学站(ZSS IAP RAS)羟基气辉长期观测资料在全球尺度气候变化背景下对中流层顶区域温度变化的分析结果。随着中介层顶温度的变化,分析了两种版本的中介层顶温度变化,并将其归一化到相同的太阳活动水平。在过去几十年的冬季,在全球地表温度升高的背景下,获得了中层顶区域温度显著下降的定量估计。此外,通过对1960-2024年数据的交叉小波分析,发现它们与北半球地表温度的最长期变化具有显著的一致性,这在较短时间间隔的数据中没有观察到。(Mokhov et al., 2017)基于20 - 21世纪模式模拟结果,在全球持续变暖的背景下,考虑到人为强迫,预测了这种一致性的可能性,但在较短时间间隔的观测数据中没有观察到这种一致性。除了长期趋势外,值得注意的特征包括20世纪70年代中层顶区域的急剧温度下降,以及它与众所周知的与El Niño事件相关的地表气候变化的同向性。利用ZSS IAP RAS卫星1960 ~ 2024年的数据进行交叉小波分析结果表明,近几十年来,中流层温度变化与El Niño指数之间存在更显著的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Temperature Changes in the Mesopause Region due to Climate Changes in Recent Decades (1960–2024)

Temperature Changes in the Mesopause Region due to Climate Changes in Recent Decades (1960–2024)

The results of an analysis of temperature variations in the mesopause region based on long-term measurements of hydroxyl airglow at the Zvenigorod Scientific Station of the Obukhov Institute of Atmospheric Physics, Russian Academy of Sciences (ZSS IAP RAS) during 1960–2024 against the global-scale climate changes are presented. Along with temperature variations in the mesopause region, two versions of temperature variations in the mesopause region, normalized to the same level of solar activity, were analyzed. Quantitative estimates of a significant decrease in temperature in the mesopause region over the past decades in winter, against the background of global surface temperature increases, were obtained. Additionally, using cross-wavelet analysis of data for the time interval 1960–2024, significant coherence of their most long-term variations with the surface temperature in the Northern Hemisphere was noted, which had not been observed in data for shorter time intervals. The possibility of such coherence was predicted in (Mokhov et al., 2017) in the context of continued global warming based on the results of model simulations for the 20th–21st centuries, taking into account anthropogenic forcing, but it had not been observed in obsevational data for shorter time intervals. Along with long-term trends, notable features include a sharp temperature drop in the mesopause region during the 1970s and its synchronicity with the well-known shift in surface climate regimes associated with El Niño events. The results of cross-wavelet analysis using data obtained at ZSS IAP RAS for the time interval 1960–2024 indicate a more significant connection between temperature variations in the mesopause region and El Niño indices in recent decades.

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来源期刊
Moscow University Physics Bulletin
Moscow University Physics Bulletin PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.70
自引率
0.00%
发文量
129
审稿时长
6-12 weeks
期刊介绍: Moscow University Physics Bulletin publishes original papers (reviews, articles, and brief communications) in the following fields of experimental and theoretical physics: theoretical and mathematical physics; physics of nuclei and elementary particles; radiophysics, electronics, acoustics; optics and spectroscopy; laser physics; condensed matter physics; chemical physics, physical kinetics, and plasma physics; biophysics and medical physics; astronomy, astrophysics, and cosmology; physics of the Earth’s, atmosphere, and hydrosphere.
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