首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Influence of Solar Activity on Penetration of Traveling Planetary-Scale Waves From the Troposphere Into the Thermosphere
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Influence of Solar Activity on Penetration of Traveling Planetary-Scale Waves From the Troposphere Into the Thermosphere

机译:太阳能活动对走动行星级波渗透到热层的渗透的影响

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In this study, numerical simulations of planetary-scale waves (PSWs), generated in the troposphere, were performed for altitudes from the Earth's surface up to 300 km. The influence of thermospheric effects of solar activity (SA) on the amplitudes and phases of westward traveling PSWs with zonal wave numbers 1 and 2 and periods 4–16 days propagating from the troposphere was simulated. Such simulations for a large number of PSW modes in the thermosphere were made for the first time. The effects of SA changes at altitudes above 100 km were involved in the general circulation model MUAM. The ionospheric conductivities for minimum and maximum SA levels were included into the MUAM. The simulation results were averaged over two ensembles of model runs with different PSW phases for conditions corresponding to the high and low SA levels for January–February. PSW atmospheric refractivity index and Eliassen-Palm flux were calculated. They correspond to simulated changes in PSW amplitudes. Changes in the zonal velocity and temperature caused by the SA variations can modify spatial distributions of the westward traveling PSWs. Wave amplitudes significantly (up to 100%) decrease at the thermospheric heights under high SA, which is accompanied by decreasing vertical component of the Eliassen-Palm flux. The 7-, 10-, and 16-day PSWs could have larger partial reflection and worse propagation conditions than the 4- and 5-day waves in the Southern Hemisphere under the high SA. At altitudes below 100 km, minor differences in zonal velocity and PSW amplitudes between high and low SA are found.
机译:在这项研究中,在对流层中产生的行星级波(PSW)的数值模拟,从地球表面的高度进行高达300公里进行。太阳能活性(SA)对来自对流层传播的带有区波数1和2的向西行程PSW的振幅和阶段的热散,从对流层传播的时期的影响。在热圈中大量PSW模式的这种模拟是第一次制造的。在100km高于100公里的海拔地区的SA变化的影响涉及一般循环模型Muam。将最小和最大SA水平的电离层导电性包含在MUAM中。仿真结果平均在模型的两个集合上,其具有不同的PSW阶段,用于对应于1月至2月的高级和低SA水平的条件。计算PSW大气折射率指数和Eliassen-Palm助焊剂。它们对应于PSW幅度的模拟变化。由SA变型引起的区域速度和温度的变化可以修改向西行驶PSW的空间分布。在高SA下的热椎骨高度下显着(高达100%)减小,其伴随着eliassen-palm通量的垂直分量。 7-,10-和16天的PSW可以具有比高SA南半球的4和5天波更大的部分反射和更差的传播条件。在低于100公里的海拔地区,发现高速SA之间的区域速度和PSW振幅的小差异。

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