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小波变换在尼泊尔喜马拉雅地区异常闪电闪光中的应用。

Application of the Wavelet Transform on the Unusual Lightning Flashes of the Himalayan Region, Nepal.

机构信息

Department of Physics, Tri - Chandra M. Campus, Tribhuvan University, Kathmandu, Nepal.

Department of Electronics and Computer Engineering, Pulchowk Campus, Tribhuvan University, Kathmandu, Nepal.

出版信息

ScientificWorldJournal. 2022 Feb 22;2022:2819712. doi: 10.1155/2022/2819712. eCollection 2022.

Abstract

The unusual lightning events are characterized by a pronounced opposite-polarity pulse prior to the main electric field waveform. These electric fields are pertinent to the unusual lightning events recorded in the Himalayan region, at the height of about 1300 m above the sea level, during the premonsoon period of 2015. For the case of unusual events, a downward positive leader approaches the ground, and there is an increase in the downward-directed electric field due to which negative leaders move upwards and will try to intercept. Continuous wavelet transform has been used to understand the features of different events of lightning frequency. The wavelet transform of different events of unusual signals in the present study reveals that the unusual flashes radiate in the spectral range of 1-412.5 kHz in the initial stage and 0.9375-337.5 kHz in the overshoot which conclude that they radiate in very low frequency to very high frequency indicating that they are composed of many microdischarges and low frequencies indicating that they are composed of very long discharges. It is believed that this research work will be useful to design engineers for installing appropriate protective measures on the appliances in the Himalayan regions.

摘要

不寻常闪电事件的特征是在主电场波形之前出现明显的相反极性脉冲。这些电场与喜马拉雅地区在 2015 年季风前期间记录的不寻常闪电事件有关,高度约为海拔 1300 米。对于不寻常事件,一个向下的正先导接近地面,由于向下指向的电场增加,负先导向上移动并试图拦截。连续小波变换已被用于理解闪电频率不同事件的特征。本研究中不同不寻常信号事件的小波变换表明,不寻常闪光在初始阶段辐射在 1-412.5 kHz 的光谱范围内,在过冲阶段辐射在 0.9375-337.5 kHz 的光谱范围内,这表明它们在非常低的频率到非常高的频率范围内辐射,表明它们由许多微放电和低频组成,表明它们由非常长的放电组成。人们相信,这项研究工作将对设计工程师在喜马拉雅地区的电器上安装适当的保护措施有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f02e/8888101/0f9e6fe43548/TSWJ2022-2819712.001.jpg

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