Interferometry Observations of the Gravity Wave Effect on the Sporadic E Layer

被引:1
|
作者
Seid, Chane Moges [1 ,2 ]
Su, Ching-Lun [1 ]
Wang, Chien-Ya [3 ]
Chu, Yen-Hsyang [1 ]
机构
[1] Natl Cent Univ, Dept Space Sci & Engn, Taoyuan City 320, Taiwan
[2] Acad Sinica, Taiwan Int Grad Program Earth Syst Sci, Taipei City 11114, Taiwan
[3] Chinese Culture Univ, Dept Optoelect Phys, Taipei City 11114, Taiwan
关键词
interferometry; sporadic E layer; drift velocities; inertial gravity waves; FIELD-ALIGNED IRREGULARITIES; RADIO OCCULTATION MEASUREMENTS; QUASI-PERIODIC ECHOES; E-REGION; PLASMA STRUCTURES; ELECTRIC-FIELDS; MIDLATITUDE; RADAR; BACKSCATTER; IONOSPHERE;
D O I
10.3390/atmos14060987
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
On the basis of interferometry measurement made with the Chung-Li VHF radar, we investigated the effects of upward propagating gravity waves on the spatial structures and dynamic behavior of the 3 m field-aligned irregularities (FAIs) of the sporadic E (Es) layer. The results demonstrate that the quasi-periodic gravity waves oscillating at a dominant wave period of about 46.3 min propagating from east-southeast to west-northwest not only modulated the Es layer but also significantly disturbed the Es layer. Interferometry analysis indicates that the plasma structures associated with gravity wave propagation were in clumpy or plume-like structures, while those not disturbed by the gravity waves were in a thin layer structure that descended over time at a rate of about 2.17 km/h. Observation reveals that the height of a thin Es layer with a thickness of about 2-4 km can be severely modulated by the gravity wave with a height as large as 10 km or more. Moreover, sharply inclined plume-like plasma irregularities with a tilted angle of about 55 & DEG; or more with respect to the zonal direction were observed. In addition, concave and convex shapes of the Es layer caused by the gravity wave modulations were also found. Some of the wave-generated electric fields were so intense that the corresponding E x B drift velocities of the 3 m Es FAIs approximated 90 m s(-1). Most interestingly, sharp Doppler velocity shear as large as 68 m/s/km of the Es FAIs at a height of around 108 km, which bore a strong association with the result of the gravity wave propagation, was provided. The plausible mechanisms responsible for this tremendously large Doppler velocity shear are discussed.
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页数:16
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