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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >WINDII Observations and WACCM-X Simulations of High-Latitude Winds Under Different Solar Radio Flux and Geomagnetic Disturbance Conditions
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WINDII Observations and WACCM-X Simulations of High-Latitude Winds Under Different Solar Radio Flux and Geomagnetic Disturbance Conditions

机译:不同太阳能无线电通量和地磁干扰条件下的高纬度风的Windii观测和WACCM-X模拟

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Thermospheric zonal winds at altitudes of 140 to 250 km are shown to reverse from eastward to strong westward between 100° and 200° in geographic longitude and 60°S to 70°S latitude in the Southern Hemisphere. The reversal also occurs at the same latitude in the Northern Hemisphere,but from 200° to 340° longitude. The phenomenon has been previously described as a "wind wall." Observations by the Wind Imaging Interferometer (WINDII) on the National Aeronautics and Space Administration's Upper Atmosphere Research Satellite (UARS) and simulations by the Whole Atmosphere Community Climate Model with thermosphere and ionosphere extension (WACCM-X) are utilized to explore the characteristics of what has been called a wind wall. In order to study the dependence on solar radio flux and geomagnetic activity, the relationships of the maximum zonal wind and F10.7 (the solar radio flux at 10.7 cm) and ap indices are investigated. The results show that WINDII observations and WACCM-X simulations agree well in describing this wind signature. Moreover, the appearance of the wind wall is found to have a strong dependence on the solar radio flux and geomagnetic activity. In addition, WINDII winds have a stronger response to geomagnetic activity than WACCM-X winds.
机译:在140至250公里的海拔地区的热散门风均显示为向东逆转,在南半球的地理经度和60°S至70°S的60°S至70°S之间的强劲。逆转也发生在北半球的相同纬度,但是从200°到340°的经度。现象以前被描述为“挡风墙”。风影干涉仪(Windii)对国家航空航天局的高层大气研究卫星(UARS)和全部大气群落延伸(WACCM-X)的全部大气群落气候模型(WACCM-X)的仿真探讨了什么已被称为风墙。为了研究对太阳能无线电通量和地磁活动的依赖性,研究了最大地风和F10.7的关系(10.7cm的太阳能无线电通量)和AP索引。结果表明,Windii观察和WACCM-X模拟很好地描述了这种风签名。此外,发现风壁的外观对太阳能无线电通量和地磁活动具有很强的依赖性。此外,Windii Winds对地磁活动的反应比WACCM-X风更强。

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