Consistency of climatic changes at different time scales in Central England and Greenland

IF 1.8 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Journal of Atmospheric and Solar-Terrestrial Physics Pub Date : 2024-09-13 DOI:10.1016/j.jastp.2024.106343
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Abstract

Characteristic variations in the Greenland isotope temperature data over the last 1000 years and in the meteorological temperature measurements collected from Central England during the past four centuries have been analyzed. We take advantage of the continuous wavelet transform to analyze the simultaneous occurrence of temperature variations of different time scales. We assess the extent to which these phenomena can be compared when examining two different northern hemisphere locations at different time scales. Among the long-term variations, we focus on the cooling at the turn of the 18th century, which occurred slightly later in Greenland than in central England, and the warming observed at present. On the short time scale, the range under study is limited to times of the order of 5-10 years. It has been found that it is on these scales that temperature variations in the two locations are relatively consistent, with a cross-correlation coefficient as high as 0.6 for timescales of the order of 9 years. The main solar activity cycle also falls within the interval of significant correlations. It is shown that despite the absence of direct correlation between temperature and solar activity, the time dependence of the wavelet cross-correlation coefficient of the two temperature series on the scale of 11 years reproduces the long-term variations of solar activity.

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我们分析了过去 1000 年格陵兰岛同位素温度数据和过去四个世纪英格兰中部气象温度测量数据的特征变化。我们利用连续小波变换分析了不同时间尺度上同时出现的温度变化。在研究北半球两个不同地点不同时间尺度的气温变化时,我们评估了这些现象的可比较程度。在长期变化中,我们重点关注 18 世纪之交的降温(格陵兰岛的降温比英格兰中部稍晚)和目前观测到的升温。在短时间尺度上,研究范围仅限于 5-10 年左右。研究发现,正是在这些时间尺度上,两地的气温变化相对一致,在 9 年左右的时间尺度上,交叉相关系数高达 0.6。主要太阳活动周期也在显著相关区间内。研究表明,尽管气温与太阳活动之间没有直接的相关性,但两个气温序列的小波交叉相关系数在 11 年尺度上的时间依赖性再现了太阳活动的长期变化。
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来源期刊
Journal of Atmospheric and Solar-Terrestrial Physics
Journal of Atmospheric and Solar-Terrestrial Physics 地学-地球化学与地球物理
CiteScore
4.10
自引率
5.30%
发文量
95
审稿时长
6 months
期刊介绍: The Journal of Atmospheric and Solar-Terrestrial Physics (JASTP) is an international journal concerned with the inter-disciplinary science of the Earth''s atmospheric and space environment, especially the highly varied and highly variable physical phenomena that occur in this natural laboratory and the processes that couple them. The journal covers the physical processes operating in the troposphere, stratosphere, mesosphere, thermosphere, ionosphere, magnetosphere, the Sun, interplanetary medium, and heliosphere. Phenomena occurring in other "spheres", solar influences on climate, and supporting laboratory measurements are also considered. The journal deals especially with the coupling between the different regions. Solar flares, coronal mass ejections, and other energetic events on the Sun create interesting and important perturbations in the near-Earth space environment. The physics of such "space weather" is central to the Journal of Atmospheric and Solar-Terrestrial Physics and the journal welcomes papers that lead in the direction of a predictive understanding of the coupled system. Regarding the upper atmosphere, the subjects of aeronomy, geomagnetism and geoelectricity, auroral phenomena, radio wave propagation, and plasma instabilities, are examples within the broad field of solar-terrestrial physics which emphasise the energy exchange between the solar wind, the magnetospheric and ionospheric plasmas, and the neutral gas. In the lower atmosphere, topics covered range from mesoscale to global scale dynamics, to atmospheric electricity, lightning and its effects, and to anthropogenic changes.
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Editorial Board A case study on the dust storm that occurred on March 13–18, 2022, over the Algerian Sahara, using satellite remote sensing Investigation of anomalous lightning activity during the January 15, 2022 Tonga volcano eruption based on measurements of the VLF and ELF electromagnetic fields Consistency of climatic changes at different time scales in Central England and Greenland A statistical analysis of atmospheric parameters for cataloged astronomical observatory sites
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