...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An Alternative Methodology of Fair-Weather Identification for Ground-Based Measurement of AEF at the Polar Region
【24h】

An Alternative Methodology of Fair-Weather Identification for Ground-Based Measurement of AEF at the Polar Region

机译:An Alternative Methodology of Fair-Weather Identification for Ground-Based Measurement of AEF at the Polar Region

获取原文
获取原文并翻译 | 示例
           

摘要

We present a novel method to discriminate atmospheric electric field (AEF) variations originating from the global electrical circuit and local meteorological-induced AEF variations. By comparing the AEF values measured at two different heights, the method identifies the AEF data including disturbances caused by charged blowing snow particles, and provides the fair-weather AEF data. The intense positive (fair-weather direction) apparent AEF was measured during strong winds because of the collision of negatively charged blowing snow particles into the sensor electrode of the electric field mill. In general, the volume density of blowing snow particles rapidly decreases with increasing height. Therefore, measured AEF values at the two heights were different. The difference between AEF values measured at the two heights increased at a wind speed of 6 m/s or more. Meanwhile, the statistical analysis showed that the AEF with and without clouds was less than approximately 1 V/m at Syowa Station, which is negligible. In addition, this case study at Syowa Station found no relationship between cloud extension/dissipation and AEF. Accordingly, we propose a practical method to identify the fair-weather conditions by the AEF values at two heights and wind speed observed in the polar region, such as at Syowa Station. When we employ criteria that the difference between the AEF observed at the 1.4 and 10 m heights was within +/- 20 V/m under the wind speed with less than 6.0 m/s to the whole data at Syowa Station, 24% of them were identified as fair-weather data.
机译:我们提出一个新颖的方法来区分大气电场AEF)变化来自全球的电路和当地meteorological-induced时变化。通过对比时以两个值不同高度,该方法标识时数据包括扰动引起的起诉吹雪粒子,并提供不少时数据。(不少方向)明显时在强风的测量碰撞带负电荷的飞雪粒子的传感器电极电场。迅速吹雪粒子的密度随高度增加而减小。在两个高度测量时的值不同。以这两个高度增加风6米/秒的速度或更多。统计分析表明,西元和没有云大约不到1 V / mSyowa车站,可以忽略不计。在Syowa车站,这个案例研究发现云之间没有关系扩展/耗散和时。提出一个实用的方法来识别不少在两个条件时的值在极地高度和风速观测在Syowa车站等地区。标准之间的差异时观察到1.4和10米高度内+ / - 20 V / m风速下不到6.0 m / s Syowa车站整个数据,24%确认为泛泛之数据。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号