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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Temperature responses to the 11year solar cycle in the mesosphere from the 31year (1979-2010) extended Canadian Middle Atmosphere Model simulations and a comparison with the 14year (2002-2015) TIMED/SABER observations
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Temperature responses to the 11year solar cycle in the mesosphere from the 31year (1979-2010) extended Canadian Middle Atmosphere Model simulations and a comparison with the 14year (2002-2015) TIMED/SABER observations

机译:从31年(1979-2010)扩展加拿大中大气模型模拟和14年(2002-2015)定时/刀剑观测的比较

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A recent 31 year simulation (1979-2010) by extended Canadian Middle Atmosphere Model (eCMAM30) and the 14 year (2002-2015) observation by the Thermosphere Ionosphere Mesosphere and Dynamics/Sounding of the Atmosphere using Broadband Emssion Radiometry (TIMED/SABER) are utilized to investigate the temperature response to the 11 year solar cycle on the mesosphere. Overall, the zonal mean responses tend to increase with height, and the amplitudes are on the order of 1-2 K/100 solar flux unit (1 sfu = 10~(-22)Wm~(-2) Hz~(-1)) below 80 km and 2-4 K/100 sfu in the mesopause region (80-100 km) from the eCMAM30, comparatively weaker than those from the SABER except in the midlatitude lower mesosphere. A pretty good consistence takes place at around 75-80 km with a response of ~1.5 K/100 sfu within 10°S/N. Also, a symmetric pattern of the responses about the equator agrees reasonably well between the two. It is noteworthy that the eCMAM30 displays an alternate structure with the upper stratospheric cooling and the lower mesospheric warming at midlatitudes of the winter hemisphere, in favor of the long-term Rayleigh lidar observation reported by the previous studies. Through diagnosing multiple dynamical parameters, it is manifested that this localized feature is induced by the anomalous residual circulation as a consequence of the wave-mean flow interaction during the solar maximum year.
机译:近期31年仿真(1979-2010)由扩展加拿大中大气模型(ECMAM30)和14年(2002-2015)的热圈电离层介质圈和使用宽带Emssion辐射测定的大气的动力学/响应的观察(定时/军刀)用于研究对介质圈对11年太阳循环的温度响应。总的来说,区域平均响应倾向于高度增加,幅度约为1-2 k / 100太阳能磁通单元(1 sfu = 10〜(-22)wm〜(-2)hz〜(-1 ))在Mesopause Region(80-100公里)的低于80km和2-4 k / 100 sfu,距离Ecmam30相比,除了中间圈的中间圈之外比来自Saber的40公里。相当良好的一致性在约75-80 km左右,响应于10°S / n内的〜1.5 k / 100 sfu。此外,关于赤道的响应的对称模式同意两者之间的相当良好。值得注意的是,ECMAM30展示了具有上层平流层冷却的替代结构,冬季半球中位于冬季半球的下层变暖,有利于先前研究报告的长期瑞利激光雷达观察。通过诊断多种动态参数,表明该局部特征是由于太阳能最大年度的波动流量相互作用而受到异常的残余循环。

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