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首页> 外文期刊>Journal of the Atmospheric Sciences >Monthly Diurnal Global Atmospheric Circuit Estimates Derived from Vostok ElectricField Measurements Adjusted for Local Meteorological and Solar Wind Influences
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Monthly Diurnal Global Atmospheric Circuit Estimates Derived from Vostok ElectricField Measurements Adjusted for Local Meteorological and Solar Wind Influences

机译:根据当地气象和太阳风影响调整后的Vostok电场测量得出的全球每日月度大气环流估算值

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Local temperature, wind speed, pressure, and solar wind-imposed influences on the vertical electric field observed at Vostok, Antarctica, are evaluated by multivariate analysis. Local meteorology can influence electric field measurements via local conductivity. The results are used to improve monthly diurnal averages of the electric field attributable to changes in the global convective storm contribution to the ionosphere-to-earth potential difference. Statistically significant average influences are found for temperature (-0.47 ± 0.13% V m~(-1) ℃~(-1)) and wind speed [2.1 ± 05% V m~(-1) (m s~(-1))~(-1)]. Both associations are seasonally variable. After adjusting the electric field values to uniform meteorological conditions typical of the Antarctic plateau winter (-70℃, 4.4 m s~(-1), and 623 hPa), the sensitivity of the electric field to the solar wind external generator influence is found to be 0.80 ± 0.07 V m~(-1) kV~(-1). This compares with the sensitivity of 0.82 V m~(-1) kV~(-1) to the convective meteorology generator that is inferred assuming an average ionosphere-to-ground potential difference of 240 kV taken with the annual mean electric field value of 198 V m~(-1). Monthly means of the Vostok electric field corrected for the influence of both local meteorology and the solar wind show equinoctial (March and September) and July local maxima. The July mean electric field is greater than the December value by approximately 8%, consistent with a Northern Hemisphere summer maximum. The solar wind-imposed potential variations in the overhead ionosphere are evaluated for three models that fit satellite measurements of ionospheric potential changes to solar wind data. Correlations with Vostok electric field variations peak with a 23-min interpolated delay relative to solar wind changes at the magnetopause.
机译:通过多变量分析评估了局部温度,风速,压力和太阳风对南极州沃斯托克观测到的垂直电场的影响。局部气象学可以通过局部电导率影响电场测量。该结果用于改善由于对流层电离层对地球电势差的全球对流风暴贡献的变化而产生的电场的每日日平均值。发现温度(-0.47±0.13%V m〜(-1)℃〜(-1))和风速[2.1±05%V m〜(-1)(ms〜(-1) )〜(-1)]。两种关联都是季节性变化的。在将电场值调整为南极高原冬季典型的均匀气象条件(-70℃,4.4 ms〜(-1)和623 hPa)后,发现电场对太阳风外部发电机影响的敏感性为为0.80±0.07 V m〜(-1)kV〜(-1)。与此相比,对流气象发生器的灵敏度为0.82 V m〜(-1)kV〜(-1),假设对流气象发生器的平均电离层与地面电势差为240 kV,而年平均电场值为198 V m〜(-1)。校正了当地气象学和太阳风影响的沃斯托克电场月度平均值显示为等月(3月和9月)和7月局部最大值。 7月份的平均电场强度比12月份的电场强度大大约8%,与北半球夏季的最大值一致。对三种模型评估了架空电离层中太阳风施加的电势变化,这三个模型适合对电离层电势变化进行卫星测量以适应太阳风数据。与Vostok电场变化的相关性以相对于在绝经期发生的太阳风变化的23分钟内插延迟达到峰值。

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