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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Seasonal Variations and GlobalWave Distributions in the Mars Thermosphere From MAVEN and Multisatellites Accelerometer-Derived Mass Densities
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Seasonal Variations and GlobalWave Distributions in the Mars Thermosphere From MAVEN and Multisatellites Accelerometer-Derived Mass Densities

机译:来自Maven和MultiSatellites加速度计的质量密度的火星热圈季节变化和全球波分布

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Martian lower thermospheric variations are complex due to internal surface dust storms and external solar activities. However, limited Martian measurement data are restricted to observe and understand its variations in the past. In this paper, multisatellite accelerometer-derived densities and the Mars Climate Database are used to investigate seasonal variations, gravity waves, and coupling effects with the internal and external inputs, including Mars Global Surveyor, Mars Reconnaissance Orbiter, Mars Odyssey, and Mars Atmosphere and Volatile EvolutioN Mission. The diurnal and seasonal structures are reconstructed by the data, and the phase of the cycles is formed by solar heating/ionizing processes. Both amplitude and phase are impacted by surface dust activities during autumn and winter, for which density increases about 1.5-3.5 times compared to spring and summer seasons. A parameterized model that includes a newly introduced dust index is proposed to well fit and reinterpret the seasonal cycles. Furthermore, the coupling process between internal atmospheric gravity waves (IAGWs) and dust activities are investigated and explained. During dust storm times/seasons, the IAGWs exhibit both narrower amplitude peaks and deposit their energy at higher altitudes relative to "clear sky" times. The IAGWs could extend their energies into higher layers beyond exobase due to a thermospheric layer expansion (i.e., density increase) during dust seasons.
机译:由于内部表面尘暴和外部太阳能活动,火星较低的热散门变化很复杂。然而,有限的火星测量数据仅限于观察和了解过去的变化。在本文中,多立卫星加速度计衍生的密度和火星气候数据库用于调查季节性变化,重力波和耦合效果,包括MARS全球测量师,火星侦察轨道,火星奥德赛和火星氛围挥发性进化使命。昼夜和季节性结构由数据重建,并且通过太阳能加热/电离过程形成循环的相位。秋季和冬季期间,幅度和相位均受表面粉尘活动,与春季和夏季季节相比,密度增加约1.5-3.5倍。包括新引入的灰尘指数的参数化模型是适合和重新诠释季节性循环。此外,研究了内部大气重力波(IAGWS)和灰尘活动之间的耦合过程并解释。在尘埃暴风雨时期/季节期间,IAGWS展示了较窄的幅度峰值,并在较高的海拔地区沉积它们相对于“透明天空”时间。由于在尘埃季节期间,IAgws可以将它们的能量延伸到超越Exobase之外的更高层。

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