首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >E region radar echoes fromlow-latitude field-aligned irregularities due to gravity waves and tides: A case study using radar, lidar, and radiosonde observations and simulations
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E region radar echoes fromlow-latitude field-aligned irregularities due to gravity waves and tides: A case study using radar, lidar, and radiosonde observations and simulations

机译:E地区雷达回波fromlow-latitude由于重力波field-aligned违规行为和潮汐:一个案例研究使用雷达,激光雷达无线电探空仪的观测和模拟

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On the night of 5 February 2011, the height-time plot of echo from E region field-aligned irregularities (FAI) received by the Indian mesosphere-stratosphere-troposphere radar at Gadanki (13.5°N, 79.2°E) shows a slow-descending layered structures separated by nearly 8 kmin the height region 80–100 km and vertically elongated structures with quasiperiodic variations at higher heights. The stratospheric thermal structure also shows similar slowly descending structures with nearly 8 km separation. Hodograph of 7–9 km band-pass filtered radiosonde zonal and meridional winds over Gadanki form clearly an ellipse, and the dominant period obtained from the ratio of major to minor axes of the ellipse is nearly 24 h indicating the presence of a nonmigrating diurnal tide with vertical wavelength of 8 km. The two-dimensional spectrum of temperature perturbations, which are assumed to be due to gravity waves, shows dominant periods near 1 h and 1.5 h. The spectrum of FAI echo also shows similar dominant periods. Altitude-time cross section of vertical ion velocity is computed using winds composed of observed gravity wave and tidal parameters. As the diurnal tide over Tirunelveli (8.7°N, 77.8°E) shows weaker amplitudes above 90 km, the removal of tidal contribution clearly reveals the observed FAI echo structure of vertically slanting plasma blob structures at higher heights and slowly descending continuous structures separated by 8 km at lower heights. The present study clearly demonstrates the role of tides and gravity waves in the formation of descending echo structures and quasiperiodic echoes respectively.
机译:2011年2月5日晚,height-time从E地区field-aligned情节的回声违规行为(FAI)收到的印度人mesosphere-stratosphere-troposphere雷达在Gadanki(13.5°N, 79.2°E)显示了slow-descending分离了近8 kmin分层结构垂直高度区域80 - 100公里,细长结构和准周期的变化更高的高度。结构也显示了类似的缓慢下降结构有近8公里分离。7 - 9公里的带通滤波无线电探空仪纬向经向风显然Gadanki形成一个椭圆,从占主导地位的时期大比小轴的椭圆几乎是24小时指示的存在吗与垂直nonmigrating全日潮波长为8公里。的温度扰动由于重力波,显示了优势时间1 h和1.5 h。附近FAI的频谱回声也显示了类似的占主导地位的时期。Altitude-time截面垂直的离子使用风组成的计算速度观测到的重力波和潮汐参数。全日潮在Tirunelveli(8.7°N, 77.8°E)显示弱振幅超过90公里,移除清楚地揭示了潮汐的贡献观察FAI回波垂直结构倾斜的等离子团结构在更高的高度,慢慢地下降连续结构较低的高度由8公里。研究清楚地演示了潮汐的作用,重力波的形成下行的回声结构和准周期的回声。

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