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The Nonlinear Model of the Response of Airglow to Gravity Waves
作者姓名:A.V.Mikhalev
作者单位:Institute of
基金项目:Supported by the National Science Foundation of China (40225011, 40336054) National Research Project (G2000078407) project of CAS (KZCX3-SW-217) International Collaboration Research Team Program of the Chinese Academy of Sciences China-Russia Joint Research Center on Space Weather,Chinese Academy of Sciences
摘    要:In this paper, we develope a time-dependent, nonlinear, photochemical-dynamical 2-D model which is composed of 3 models: dynamical gravity wave model, middle atmospheric photochemical model, and airglow layer photochemical model. We use the model to study the effect of the gravity wave propagation on the airglow layer. The comparison between the effects of the different wavelength gravity wave on the airglow emission distributions is made. When the vertical wavelength of the gravity wave is close to or is shorter than the thickness of the airglow layer, the gravity wave can make complex structure of the airglow layer, such as the double and multi-peak structures of the airglow layers. However, the gravity wave that has long vertical wavelength can make large scale perturbation of the airglow emission distribution.

关 键 词:重力波  气辉  天文  非线性模型

The Nonlinear Model of the Response of Airglow to Gravity Waves
A.V.Mikhalev.The Nonlinear Model of the Response of Airglow to Gravity Waves[J].Chinese Journal of Space Science,2005,25(5):490-495.
Authors:J Y Xu  H Gao  AV Mikhalev
Institution:1. Laboratory for Space Weather, Center for Space Science and Applied Resarh, Chinee Academy of Sciences, Beijing 100080, China;China-Russia Joint Research Center on Space Weather
2. Institute of Solar-Terrestrial Physics, Siberian Branch, Russian Academy of Seiene, Irkutsk 664033, Russia;China-Russia Joint Research Center on Space Weather
Abstract:In this paper, we develope a time-dependent, nonlinear, photochemical-dynamical 2-D model which is composed of 3 models: dynamical gravity wave model, middle atmospheric photochemical model, and airglow layer photochemical model. We use the model to study the effect of the gravity wave propagation on the airglow layer. The comparison between the effects of the different wavelength gravity wave on the airglow emission distributions is made. When the vertical wavelength of the gravity wave is close to or is shorter than the thickness of the airglow layer, the gravity wave can make complex structure of the airglow layer, such as the double and multi-peak structures of the airglow layers. However, the gravity wave that has long vertical wavelength can make large scale perturbation of the airglow emission distribution.
Keywords:Airglow  Gravity waves  Mesopause  Photochemical reaction  Nonlinear model
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