Asnawi Husin, Buldan Muslim
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引用次数: 0

摘要

中尺度行进电离层扰动(MSTID),被认为是大气重力波(AGW)在电离层高度水平传播并对电离层电子密度结构产生影响的表现。这些大气重力波来源于低层大气活动,如台风、火山爆发和海啸。波能通过其耦合感应过程传播到电离层区域。据了解,TID的波结构会影响无线电波在电离层中的传播,从而影响导航卫星定位测量的性能。基于2004年12月的亚齐海啸,本研究旨在利用苏门答腊GPS网(Sumatra GPS Array, SUGAR)的总电子含量(TEC)数据研究电离层大气重力波的感应。采用滤波分离350 km高空电离层穿透点(IPP, ionospheric pierce point)中尺度扰动的AGW感应TEC变化探测技术。结果表明,中等尺度TID的水平波长约为180±12 Km,速度约为376±9 ms-1。根据二维地图,TID向东南移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFEK GELOMBANG TSUNAMI ACEH 2004 PADA GANGGUAN IONOSFER BERGERAK SKALA MENENGAH DARI PENGAMATAN JARINGAN GPS SUMATRA
Medium Scale Travelling Ionospheric Disturbance (MSTID), thought to be manifestation of atmospheric gravity wave (AGW) in the ionospheric altitude that propagates horizontally and effects on in the electron density structure of ionosphere. These atmospheric gravity waves sourced  from lower atmospheric activities such as typhoons, volcanic eruptions and tsunamis. Wave energy by its coupling induction process can travel to the ionosphere region. It has been understood that the TID's wave structure have an impact on the propagation of radio waves in the ionosphere so that it will affect the performance of navigation satellite-based positioning measurements. Based on Aceh tsunami in December 2004, this study aimed to investigation of the induction of atmospheric gravity waves in the ionosphere using total electron content (TEC) data from the Sumatra GPS network (Sumatra GPS Array, SUGAR). The detection technique of TEC changes due to AGW induction with a filter to separate medium scale disturbance at the ionospheric pierce point at an altitude of 350 km (IPP, Ionospheric Pierce Point). The results show the horizontal wavelength of a medium-scale TID around 180 ± 12 Km with a velocities of around 376 ± 9 ms-1. Based on two-dimensional map, the TID moves to the southeast.
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