首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Q2DW-Tide and -Ionosphere Interactions as Observed From ICON and Ground-Based Radars
【24h】

Q2DW-Tide and -Ionosphere Interactions as Observed From ICON and Ground-Based Radars

机译:Q2DW-Tide作为观察和电离层的交互从图标和地面雷达

获取原文
获取原文并翻译 | 示例
           

摘要

A quasi-2-day wave (Q2DW) event during January-February, 2020, is investigated in terms of its propagation from 96 to 250 km as a function of latitude (10°S to 30°N), its nonlinear interactions with migrating tides to produce 16 and 9.6-h secondary waves (SWs), and the plasma drift and density perturbations that it produces in the topside F-region (590-607 km) between magnetic latitudes 18°S and 18°N. This is accomplished through analysis of coincident Ionospheric Connections Explorer (ICON) measurements of neutral winds, plasma drifts and ion densities, and wind measurements from four lowlatitude (±15°) specular meteor radars (SMRs). The Q2DW westward-propagating components that existed during this period consist of zonal wavenumbers s = 2 and s = 3, that is, Q2DW+2 and Q2DW+3 (e.g., He, Chau et al., 2021, https://doi.org/10.1029/93jd00380). SWs in the ICON measurements are inferred from Q2DW+2 and Q2DW+3 characteristics derived from traditional longitude-UT fits that potentially contain aliasing contributions from SWs ("apparent" Q2DWs), from fits to space-based zonal wavenumbers that each reflect the aggregate signature of either Q2DW+2 or Q2DW+3 and its SWs combined ("effective" Q2DWs), and based on information contained in published numerical simulations. The total Q2DW ionospheric responses consists of F-region field-aligned and meridional drifts of order ±25 ms~(-1) and ±5-7 ms~(-1), respectively, and total ion density perturbations of order (±10%-25%). It is shown that the SWs can sometimes make substantial contributions to the Q2DW winds, drifts, and plasma densities.
机译:quasi-2-day波(Q2DW)事件期间2020年二月,是调查它的传播从96到250公里纬度的函数(10°S 30°N),它的非线性相互作用迁移潮生产16 - 9.6 - h第二波(慢波睡眠),和等离子体漂移和密度扰动它产生在上部F-region(590 - 607公里)磁纬度之间18°S和18°N。通过分析一致电离层连接Explorer(图标)测量的中性风,等离子体漂移离子密度,和风力测量从四个lowlatitude(±15°)镜面流星雷达死因特异性)。的Q2DW westward-propagating组件在此期间由纬向波数= 2和s = 3,即Q2DW + 2https://doi.org/10.1029/93jd00380)。图标测量从Q2DW + 2和推断Q2DW + 3来源于传统的特征longitude-UT符合潜在包含混叠的贡献慢波睡眠(“明显”Q2DWs),从适合空间区域波数,每个反映聚合签名Q2DW + 2或Q2DW + 3和慢波睡眠(“有效”Q2DWs)相结合,并根据信息包含在数字出版模拟。由F-region field-aligned和子午飘的±25 ~(1)女士和女士±5 - 7 ~ (1),分别和总离子密度扰动订单(±10% - -25%)。有时做出实质性的贡献Q2DW风、漂移和等离子体密度。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号