wave identification
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2021 ◽  
Vol 861 (4) ◽  
pp. 042053
Author(s):  
Zhaowei Yang ◽  
Yingguo Hu ◽  
Meishan Liu ◽  
Erlei Yao ◽  
Gen Zhao ◽  
...  

Author(s):  
Zhaowei Yang ◽  
Yinguo Hu ◽  
Meishan Liu ◽  
Xinxia Wu ◽  
Gen Zhao

Atmosphere ◽  
2020 ◽  
Vol 11 (9) ◽  
pp. 924
Author(s):  
Sergey Leble ◽  
Sergey Vereshchagin ◽  
Nataliya V. Bakhmetieva ◽  
Gennadiy I. Grigoriev

The problem of wave identification is formulated as applied to the results of measurements of the temperature and the density of the neutral atmosphere in the range height 90–120 km by the artificial periodic irregularities (APIs) technique. The technique is based on the resonant scattering of radio waves by artificial periodic irregularities of the ionospheric plasma emerging in the field of a standing wave arising from the interference of the incident and reflected waves from the ionosphere. APIs were created using SURA heating facility (named as SURA experiment). The acoustic wave theory is reformulated on the base of data which can be observed in the given experimental setup. The basic system of equations is reduced so that it accounts only upward and downward directed waves, ignoring entropy mode. The algorithm of wave identification based on usage of dynamic projection operators for such a reduced case is proposed and explicit form of projection operators is derived. Its application to finite number dataset via Discrete Fourier Transform (DFT) is described and results of its application to the DFT-transformed set of experimental observation of the temperature and density perturbations are presented. The result yields hybrid amplitudes, that allow us to calculate energy of the directed waves that enter the observed superposition. The problem of entropy mode detection is discussed, the corresponding projecting operators for the full evolution system are built and a way to apply the method to quantification of it is proposed.


2020 ◽  
Vol 17 (3) ◽  
pp. 519-523
Author(s):  
Wei Zhu ◽  
Xin Li ◽  
Chang Liu ◽  
Fangzheng Xue ◽  
Yefeng Han
Keyword(s):  
P Wave ◽  

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