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Whole Atmosphere Model Simulations of Ultrafast Kelvin Wave Effects in the Ionosphere and Thermosphere

机译:整个气氛超快的模拟模型在电离层和开尔文波的影响热大气层

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This paper examines the response of the upper atmosphere to equatorial Kelvin waves with a period of ~3 days, also known as ultrafast Kelvin waves (UFKWs). The whole atmosphere model Groundto- topside model of Atmosphere and Ionosphere for Aeronomy (GAIA) is used to simulate the UFKW events in the late summer of 2010 and 2011 as well as in the boreal winter of 2012/2013. When the lower layers of the model below 30-km altitude are constrained with meteorological data, GAIA is able to reproduce salient features of the UFKW in the mesosphere and lower thermosphere as observed by the Aura Microwave Limb Sounder. The model also reproduces ionospheric response, as validated through comparisons with total electron content data from the Gravity field and steady-state Ocean Circulation Explorer satellite as well as with earlier observations. Model results suggest that the UFKW produces eastward-propagating ~3-day variations with zonal wavenumber 1 in the equatorial zonal electric field and F region plasma density. Model results also suggest that for a ground observer, identifying ionospheric signatures of the UFKW is a challenge because of ~3-day variations due to other sources. This issue can be overcome by combining ground-based measurements from different longitudes. As a demonstration, we analyze ground-based magnetometer data from equatorial stations during the 2011 event. It is shown that wavelet spectra of the magnetic data at different longitudes are only in partial agreement, with or without a ~3-day peak, but a spectrum analysis based on multipoint observations reveals the presence of the UFKW.
机译:本文考察了反应上赤道开尔文波的氛围~ 3天,也被称为超快的开尔文波(UFKWs)。Groundto -上部的氛围和模式电离层对高层大气物理学(盖亚)模拟在夏末UFKW事件2010年和2011年,以及在北方的冬天2012/2013。下面洪高度限制气象数据,盖亚能够繁殖特色的UFKW中间层和较低的热电离层观测的光环微波肢体测深仪。电离层响应,如验证通过比较总电子含量数据海洋重力场和稳态循环Explorer卫星以及早期的观察。UFKW产生eastward-propagating ~三天变化与纬向波数1赤道地区纬向电场和F等离子体密度。地面观察者,确定电离层签名的UFKW是一个挑战,因为~ 3天变化由于其他来源。结合地面问题是可以克服的测量不同经度。演示中,我们分析地面从赤道站在磁强计数据2011年的事件。磁数据在不同经度只在部分协议,有或没有一个~ 3天峰,但基于频谱分析多点观测揭示的存在

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