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首页> 外文期刊>Journal of geophysical research. Planets >Gravity Wave Observations by the Mars Science Laboratory REMS Pressure Sensor and Comparison With Mesoscale Atmospheric Modeling With MarsWRF
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Gravity Wave Observations by the Mars Science Laboratory REMS Pressure Sensor and Comparison With Mesoscale Atmospheric Modeling With MarsWRF

机译:重力波观测火星科学实验室REMS压力传感器和比较与MarsWRF进行中尺度大气建模

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摘要

Surface pressure measurements on Mars have revealed a wide variety of atmospheric phenomena. The Mars Science Laboratory Rover Environmental Monitoring Station pressure sensor data set is now the longest duration record of surface pressure on Mars. We use the first 2580 Martian sols, nearly 4 Mars years, of measurements to identify atmospheric pressure waves with periods of tens of minutes to hours using wavelet analysis on residual pressure after the tidal harmonics are removed. We find these waves have a clear diurnal cycle with strongest activity in the early morning and late evening and a seasonal cycle with the strongest waves in the second half of the martian year (L_s = 180-360°). The strongest such waves of the entire mission occurred during the Mars Year 34 global dust storm. Comparable atmospheric waves are identified using atmospheric modeling with the MarsWRF general circulation model in a "nested" high spatial resolution mode. With the support of the modeling, we find these waves best fit the expected properties of inertia-gravity waves with horizontal wavelengths of O(100s) of km.
机译:在火星表面压力测量揭示了各种大气现象。的火星科学实验室探测器环境监测站压力传感器数据集现在表面的最长时间记录火星上的压力。火星溶胶,近4年,测量确定大气压力波和周期使用小波数十分钟到几小时分析潮汐后剩余压力谐波是移除。清楚昼夜循环与最强的活动清晨和晚上和季节性周期与最强的电波在下半年火星年(L_s = 180 - 360°)。最强的这样一波又一波的整个使命发生在34个火星年全球灰尘风暴。使用大气建模与识别MarsWRF环流模式的“嵌套”高空间分辨率模式。建模时,我们发现这些波最适合预计inertia-gravity波的性质横向波长的O(100年代)的公里。

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