利用日本中津川舒曼共振观测资料研究全球气温和雷暴活动

Y. Hobara, T. Harada, K. Ohta, M. Sekiguchi, M. Hayakawa
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引用次数: 7

摘要

本文利用在日本中津川观测到的舒曼共振(Schumann resonance, SR)强度和全球闪电活动的长期记录,对全球温度变化进行了研究。在两个水平分量上推导了4年SR强度第一模态和第二模态的累积磁场能量。将场能量的月依赖性与相应时期的全球闪电和温度资料进行了比较。结果表明,SR能量与中纬度地区的温度和全球闪电活动密切相关。在此基础上,利用主成分分析(PCA)提取各数据集中的周期分量。SR能量的年分量与中纬度温度呈显著相关,半年分量与低纬度温度呈显著相关。研究了非洲和亚洲雷暴活动对全球SR的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on global temperature and thunderstorm activity by using the data of Schumann resonance observed at Nakatsugawa, Japan
In this paper we use a long-term record of the Schumann resonance (SR) intensity observed in Nakatsugawa, Japan and global lightning activity to study the global temperature change. The cumulative magnetic field energy from the first and second modes of SR intensity for 4 years is derived for two horizontal components. The monthly dependence of field energy is compared with the global lightning and temperature data for the corresponding time period. As a result SR energy is found to be correlated well with the temperature in the middle latitude and global lightning activity. Furthermore the principal component analysis (PCA) is applied to extract the periodical component in each data set. The annual component of SR energy has a significant correlation with the middle latitude temperature, whilst the semi-annual component of the SR energy has a significant correlation with low latitude temperature. The correlation pattern varies with magnetic components and the contribution from African and Asian thunderstorm activity to the global SR is studied.
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