STATISTICALLY SIGNIFICANT ESTIMATES OF INFLUENCE OF SOLAR ACTIVITY ON PLANETARY WAVES IN THE MIDDLE ATMOSPHERE OF THE NORTHERN HEMISPHERE AS DERIVED FROM MUAM MODEL DATA

A. Koval
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引用次数: 4

Abstract

Numerical simulation has been used to examine the effect of changes in solar activity (SA) in the thermosphere on amplitudes of long-period planetary waves (PW) for the winter period in the Northern Hemisphere. The model of the middle and upper atmosphere (MUAM) is used. It allows simulations of general atmospheric circulation at altitudes 0–300 km. In order to reproduce SA changes, different values of the solar radio flux at a wavelength of 10.7 cm at an altitude of more than 100 km are set in the MUAM radiation block. To take into account the effect of charged particles in the ionosphere on the neutral gas dynamics, ionospheric conductivities for different SA levels are included in MUAM. To improve the statistical reliability of the results, two ensembles of model simulations consisting of 16 runs corresponding to the minimum and maximum SA have been obtained. The statistical confidence of average differences in PW amplitudes between high and low SA has been calculated. The results are shown to be reliable in almost the entire altitude range 0–300 km. Results of the simulations have shown for the first time that statistically significant differences in amplitudes of long-period PWs can reach 10–15 % in the middle atmosphere of the Northern Hemisphere, depending on the zonal wave number. At the same time, reflection of PWs at altitudes of lower thermosphere has a significant effect on the PW structure in the middle atmosphere.
太阳活动对北半球中层大气中行星波影响的统计上显著的估计(来自muam模式数据)
本文利用数值模拟方法研究了热层太阳活动(SA)变化对北半球冬季长周期行星波(PW)振幅的影响。采用了中高层大气模式(MUAM)。它可以模拟0-300千米高度的大气环流。为了重现SA的变化,在MUAM辐射块中设置了海拔100 km以上、波长为10.7 cm的太阳射电通量的不同值。为了考虑电离层中带电粒子对中性气体动力学的影响,MUAM中包括了不同SA水平下电离层电导率。为了提高结果的统计可靠性,得到了对应最小SA和最大SA的两个16次模型模拟集合。计算了高、低SA间PW振幅平均差值的统计置信度。结果表明,在0-300 km的几乎整个高度范围内,结果是可靠的。模拟结果首次表明,随纬向波数的不同,北半球中层大气中长周期PWs振幅的统计差异可达10 - 15%。同时,低层热层高度的PW反射对中层大气PW结构有显著影响。
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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