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Mean winds in the MLT, the SQBO and MSAO over Ascension Island (8° S, 14° W)

机译:MLT中的平均风,SQBO和MSAO在上升岛(8°S,14°W)

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Mean winds in the mesosphere and lower thermosphere (MLT) over Ascension Island (8° S, 14° W) have been measured at heights of approximately 80–100 km by a meteor radar. The results presented in this study are from the interval October 2001 to December 2011. In all years, the monthly-mean meridional winds display a clear annual oscillation. Typically, these winds are found to be southward during April–October, when they reach velocities of up to about ?23 m s?1, and northward throughout the rest of the year, when they reach velocities up to about 16 m s?1. The monthly-mean zonal winds are generally westward throughout most of the year and reach velocities of up to about ?46 m s?1. However, eastward winds are observed in May–August and again in December at the lower heights observed. These eastward winds reach a maximum at heights of about 86 km with velocities of up to about 36 m s?1, but decay quickly at heights above and below that level. The mesospheric semi-annual oscillation (MSAO) is clearly apparent in the observed monthly-mean zonal winds. The winds in first westward phase of the MSAO are observed to be much stronger than in the second phase. The westward phase of the MSAO is found to maximise at heights of about 84 km with typical first-phase wind velocities reaching about ?35 m s?1. These meteor-radar observations have been compared to the HWM-07 empirical model. The observed meridional winds are found to be generally more southward than those of the model during May–August, when at the lower heights observed the model suggests there will be only weakly southward, or even northward, winds. The zonal monthly-mean winds are in generally good agreement, although in the model they are somewhat less westward than those observed. Throughout the observations there were eight occasions in which the first westward phase of the MSAO was observed. Strikingly, in 2002 there was an event in which the westward winds during the first phase of the MSAO were much stronger than normal and reached velocities of about ?75 m s?1. This event is explained in terms of a previously proposed mechanism in which the relative phasing of the stratospheric quasi-biennial oscillation (SQBO) and the MSAO allows an unusually large flux of gravity waves of large westward phase speed to reach the mesosphere. It is the dissipation of these gravity waves that then drives the MLT winds to the large westward velocities observed. It is demonstrated that the necessary SQBO–MSAO phase relationship did indeed exist during 2002, but not during the other years observed here. This demonstration provides strong support for the suggestion that extreme zonal-wind events during the MSAO result from the modulation of gravity-wave fluxes.
机译:介质叶岛(8°S,14°W)的介质圈和较低的热圈(MLT)中的平均风在雷达大约80-100公里的高度上测量。本研究中提出的结果是从2001年10月至2011年12月的间隔。在全年期间,每月平均的经络展示明确的年度振荡。通常,这些风在4月至10月在达到约23米的速度达到了今年剩余时间的时候,这些风会达到左右的速度,当它们达到大约16米的速度每年的大部分年度,每月均值的Zonal风通常是向西的,达到约46米的速度?1。然而,东风在5月至8月和12月在观察到的较低高度中观察到。这些东风的高度达到约86公里的最大值,速度高达约36米,但在高于和低于该水平的高度和以下高度衰减。在观察到的月的月经的区域风中,Mesompheric半年度振荡(MSAO)显而易见。观察到MSAO的第一个向西阶段的风比第二阶段更强大。 MSAO的向西阶段被发现,在约84公里的高度上最大化,典型的第一期风速达到约35 m S?1。这些流星雷达观察结果已经与HWM-07实证模型进行了比较。发现观察到的经络通常比模特在5月期间的模型更南向,当时在观察到的较低高度时,该模型表明将只有弱向南,甚至向北,风。区域每月平均风通常很好一致,虽然在模型中,它们比观察到的模型略低。在整个观察中,观察了八次MSAO的第一个向西阶段。引人注目的是,2002年有一个事件,其中MSAO第一阶段的西方风比正常正常和达到约75米的速度更强烈该事件是在先前提出的机制方面解释的,其中平流层准二年期振荡(SQBO)和MSAO的相对定相允许大量大的向西阶段速度的异常大的远程,以达到介质层。这是对这些重力波的耗散,然后将MLT风驱动到所观察到的大向向下速度。结果证明,2002年期间,必要的SQBO-MSAO相关系确实存在,但在此观察到的其他几年中。这一示威规定了对MSAO期间的极端骚风事件因重力波通量的调制而提供了强有力的支持。

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