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Dust tides and rapid meridional motions in the Martian atmosphere during major dust storms

机译:主要沙尘暴中火星氛围中的尘埃潮汐和快速子午动动作

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The atmosphere of Mars is strongly affected by the spatial and temporal variability of airborne dust. However, global dust variability within a sol (Martian day) is still poorly understood. Although short-term dynamic processes are crucial, detailed comparisons of simulated diurnal variations are limited by relatively sparse observations. Here, we report the discovery of ubiquitous, strong diurnal tides of dust in the Southern Hemisphere of Mars. Driven by the westward-propagating migrating diurnal thermal tide, zonally distributed dust fronts slosh back and forth in a wide latitudinal range of up to 40° within one sol during major dust storms. Dust tides-tidal transport of dust in this way-rapidly transport heat and constituents meridionally, allowing moist air near the summer pole to be rapidly transported to lower latitudes during the night, where it then can be lifted by daytime deep convection and contribute to hydrogen escape from Mars during global dust storms.
机译:火星的气氛受到空中粉尘的空间和时间变异性的强烈影响。然而,溶胶(火星日)内的全球灰尘变异仍然明白。尽管短期动态过程至关重要,但模拟昼夜变化的详细比较受相对稀疏的观察的限制。在这里,我们报告了火星南半球尘土尘埃的发现。由西方传播迁移迁移日热潮驱动,Zonaly分布的灰尘前沿在主要的尘暴期间在一个溶胶内来回延伸到高达40°的宽度范围内。这种方式的尘埃遍布粉尘的潮汐运输 - 快速运输热量和成分,允许夏季杆附近的潮湿空气在夜间迅速运输到降低纬度,然后可以通过白天深对流举起并有助于氢气在全球沙尘暴中逃离火星。

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