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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >The thermospheric semiannual density response to solar EUV heating
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The thermospheric semiannual density response to solar EUV heating

机译:对太阳EUV加热的热圈半年度密度响应

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The goal of this study was to characterize the thermospheric semiannual density response to solar heating during the last 35 years. Historical radar observational data have been processed with special orbit perturbations on 28 satellites with perigee heights ranging from 200 to 1100 km. Approximately 225,000 very accurate average daily density values at perigee have been obtained for all satellites using orbit energy dissipation rates. The semiannual variation has been found to be extremely variable from year to year. The magnitude of the maximum yearly difference, from the July minimum to the October maximum, is used to characterize the yearly semiannual variability. It has been found that this maximum difference call vary by as much as 100% from one year to the next. A high correlation has been found between this maximum difference and solar EUV data. The semiannual variation for each year has been characterized based on analyses of annual and semiannual cycles, using Fourier analysis, and equations have been developed to characterize this yearly variability. The use of new solar indices in the EUV and FUV wavelengths is shown to very accurately describe the semiannual July minimum phase shifting and the variations in the observed yearly semiannual amplitude.
机译:这项研究的目的是表征过去35年中热层对太阳加热的半年密度响应。雷达的历史观测数据已经过特殊轨道扰动处理,其近场高度在200至1100 km之间,有28颗卫星。对于所有使用轨道能量耗散率的卫星,在近地点获得了大约225,000个非常准确的日平均密度值。已经发现半年变化每年变化很大。从7月的最小值到10月的最大值的最大年度差异的大小用于表征年度半年度变化。已经发现,这种最大差异通知从一年到下一年变化多达100%。在此最大差异与太阳EUV数据之间发现高度相关。每年的半年度变化已通过使用傅立叶分析对年度和半年度周期进行了分析,并开发了方程式来表征该年度变化。已显示在EUV和FUV波长中使用新的太阳指数可以非常准确地描述半年度7月最小相移以及观测到的年度半年度振幅的变化。

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