Observations and Variability of Near-Surface Atmospheric Electric Fields across Multiple Stations

Atmosphere Pub Date : 2024-01-19 DOI:10.3390/atmos15010124
Wen Li, Zhibin Sun, Zhaoai Yan, Zhongsong Ma
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Abstract

The near-surface atmospheric electrostatic field plays a pivotal role in comprehending the global atmospheric circuit model and its influence on climate change. Prior to delving into the intricate interplay between solar activities, geological activities, and atmospheric electric field, a comprehensive examination of the diurnal fair atmospheric electric field’s baseline curve within a specific region is essential. Based on the atmospheric electric field network monitoring in Yunnan Province in the year 2022, this study systematically investigated the distribution of the atmospheric electric field under both fair-weather and disturbed weather conditions at a quadrilateral array encompassing Chuxiong Station, Mouding Station, Lufeng Station, and Dali Station. The primary focus was on elucidating the variations in the daily variation curves of fair atmospheric electric fields and conducting a comparative analysis with the Carnegie curves. The possible reasons for the differences among them are also discussed in this study, but more observational evidence is required to confirm the specific causes in the future.
多个观测站对近地面大气电场的观测及其变化情况
近地表大气静电场在理解全球大气回路模型及其对气候变化的影响方面起着举足轻重的作用。在深入研究太阳活动、地质活动和大气电场之间错综复杂的相互作用之前,对特定区域内昼夜公平大气电场基线曲线的全面研究至关重要。本研究以 2022 年云南省大气电场网络监测为基础,在楚雄站、牟定站、禄丰站和大理站组成的四边形阵列上,系统研究了晴好天气和扰动天气条件下的大气电场分布。主要重点是阐明公平大气电场日变化曲线的变化,并与卡内基曲线进行比较分析。本研究还讨论了造成它们之间差异的可能原因,但具体原因还需要今后更多的观测证据来证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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