首页> 外文期刊>Journal of geophysical research. Planets >A ground-to-exosphere Martian general circulation model: 1. Seasonal, diurnal, and solar cycle variation of thermospheric temperatures
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A ground-to-exosphere Martian general circulation model: 1. Seasonal, diurnal, and solar cycle variation of thermospheric temperatures

机译:地-外圈火星全环流模型:1.热圈温度的季节性,昼夜和太阳周期变化

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We present the extension to the thermosphere of a Martian general circulation model, the first able to self-consistently study the whole Martian atmosphere from the surface to the exosphere. We describe the parameterizations developed to include physical processes important for thermospheric altitudes. The results of a simulation covering 1 full Martian year are presented, focusing on the seasonal, diurnal, and day-to-day variability of the temperatures in the exobase region. The seasonal variation of the zonal mean temperatures in the upper atmosphere is of about 100 K, mostly due to the variation of the solar forcing. The temperature of the mesopause ranges between 115 and 130 K, with little seasonal and day-night variations. Its pressure level undergoes significant seasonal and day-night variations. Comparisons with SPICAM observations show that the modeled mesopause is too low and too warm. A similar study for the homopause shows that it is located higher in the atmosphere during solstices, owing to reinforced mixing by a stronger circulation. Important day-night temperature differences are found in the thermosphere, ranging from about 60 K at aphelion to 110 K at perihelion. This diurnal cycle is slightly perturbed by the day-to-day variations of temperature, dominated by waves with periods of 2 to 6 sols and amplitude of 30 K. The model reproduces the observed solar cycle variation in temperatures .when using a UV heating fficiency of 16%, slightly lower than the theoretical value. The seasonal variation of temperatures is overestimated by the model, in comparison with the available measurements.
机译:我们提出了火星全环流模型对热圈的扩展,这是第一个能够自洽地研究整个火星大气层(从地表到大气层)的模型。我们描述了开发的参数化,其中包括对热球高度重要的物理过程。给出了涵盖整个火星年的模拟结果,重点是外底地区温度的季节性,每日变化和每日变化。高层大气纬向平均温度的季节变化约为100 K,这主要是由于太阳强迫的变化。绝经的温度范围在115到130 K之间,几乎没有季节性和昼夜变化。它的压力水平会经历明显的季节性和昼夜变化。与SPICAM观测值的比较表明,建模的中年太低且太热。对同型暂停的类似研究表明,在冬至期间,由于更强的循环加强了混合,它位于大气中较高的位置。在热圈中发现了重要的昼夜温差,范围从阿菲尼克尔的大约60 K到近日点的110K。温度的日常变化会稍微扰动该昼夜周期,该周期以2到6个溶胶的周期和30 K的振幅的波浪为主。该模型再现了使用紫外线加热效率时观察到的太阳周期的温度变化。为16%,略低于理论值。与可用的测量值相比,该模型高估了温度的季节性变化。

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