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A climatology of middle and upper atmosphere radar observations of thermospheric winds

机译:中高层大气雷达对热层风的观测的气候学

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Shigaraki middle and upper atmosphere (MU) radar observations of horizontal thermospheric winds in the magnetic meridian plane over the period September 1986 to September 1996 are reported as climatological averages in the form of time-of-day variations for several combinations of seasonal and solar activity conditions and are compared with winds predicted by the horizontal wind model (HWM) anti with winds measured at Saint Santin and Millstone Hill. The dominant feature of the MU wind behavior is its mean diurnal variation of northward flow by day and southward flow by night, with the nighttime wind smoothly approaching and receding from a midnight maximum, while the daytime wind tends to show two peaks, a strong. one in the early daylight hours and a weak one in the afternoon-evening. HWM shows the same unimodal nighttime and bimodal daytime behavior, but the HWM pattern is shifted about 2 hours later in time. The amplitude of the diurnal harmonic decreases from 78 m/s at solar minimum to 45 m/s at solar maximum, while: HWM shows a corresponding increase from 53 to 62 m/s. The diurnal amplitude is remarkably stable with season but is superposed on a steady willd of 41 m/s southward in summer, 15 m/s northward in winter, and midway between these limits at the equinoxes. HWM shows a symmetric pattern of 30 m/s southward in summer and 30 m/s northward ill winter. Ion drag appears to be the main regulator of wind speed, and the seasonal wind patterns have a profound effect on the seasonal behavior of the ionosphere. [References: 14]
机译:1986年9月至1996年9月期间,Shigaraki中子和高层大气(MU)雷达观测到的磁子午面水平热层风以气候平均值的形式报导,表现为季节性和太阳活动的几种组合的每日变化并与水平风模型(HWM)预测的风和圣桑丁和密尔斯顿山的风进行比较。 MU风的主要特征是白天北风和夜间南风的平均日变化,夜间风平稳地接近并从午夜最大值开始逐渐减小,而白天风趋向于显示两个峰值,即强。在白天的傍晚时一个,晚上傍晚时一个微弱的晚上。 HWM表现出相同的单峰夜间行为和双峰白天行为,但是HWM模式在大约2小时后才发生变化。日谐波的幅度从太阳最低时的78 m / s降低到太阳最高时的45 m / s,而:HWM显示相应地从53 m / s增加到62 m / s。日振幅随季节变化非常稳定,但在夏季以南41 m / s,冬季以北15 m / s以及在春分点在这些极限之间的中间,叠加了稳定的斜率。 HWM在夏季以南30 m / s和在冬季以北30 m / s的情况下显示出对称模式。离子阻力似乎是风速的主要调节器,季节性风型对电离层的季节性行为有深远的影响。 [参考:14]

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