A. Munguira, R. Hueso, A. Sánchez-Lavega, D. Toledo, M. de la Torre Juárez, A. Vicente-Retortillo, G. M. Martínez, T. Bertrand, T. del Rio-Gaztelurrutia, E. Sebastián, M. Lemmon, J. Pla-García, J. A. Rodríguez-Manfredi
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引用次数: 0
摘要
火星环境动力学分析仪(MEDA)在 700 个太阳日期间对杰泽罗地面和近地表大气温度的测量,描述了整个火星年期间近地表火星大气的热行为特征。将 MEDA 测量值的季节性演变与火星气候数据库的预测和地表太阳辐照度进行了比较。在温度的日周期中观测到的热潮遵循季节周期,在数十溶胶的时间尺度上有大于 2 K 的额外变化。我们还观测到秋季和冬季平均日气温在太阳至太阳之间有大约 1 K 的变化,周期为 4-7 个太阳,这可能与高纬度地区这两个季节经常出现的气压扰动有关。我们研究了垂直热梯度和温度波动的演变,没有发现辐照度和尘埃量的季节性响应。我们发现,对流边界层在日落前 1 小时变得等温并塌陷,但北半球冬季除外,此时塌陷发生的时间更接近日落,这意味着白天对流不稳定性的持续时间更长。在这段时间前后,漫游车位于三角洲前沿的一个地形复杂的地方,在那里我们观测到了较强的热梯度和剧烈的白天气温波动。我们还在这里发现了夜间近地面气温重力波,振幅为 2 K,周期为 10 分钟。这些重力波可能通过近等温稳定层向下传播。
One Martian Year of Near-Surface Temperatures at Jezero From MEDA Measurements on Mars2020/Perseverance
Measurements of ground and near surface atmospheric temperatures at Jezero obtained during 700 sols by the Mars Environmental Dynamics Analyzer (MEDA) characterize the thermal behavior of the near surface Martian atmosphere during a full Martian Year. The seasonal evolution of MEDA measurements is compared with predictions from the Mars Climate Database and the solar irradiance at the surface. Thermal tides observed in the daily cycle of temperatures follow a seasonal cycle with additional variations greater than 2 K on time-scales of tens of sols. We also observe sol-to-sol variations of about 1 K in mean daily air temperatures in autumn and winter with periodicities of 4–7 sols that might be related to baroclinic disturbances that are frequent in those seasons at high latitudes. We examine the evolution of the vertical thermal gradient and temperature fluctuations without finding a seasonal response to irradiance and dust load. We find that the convective boundary layer becomes isothermal and collapses 1 hr before sunset except during northern hemisphere winter, when the collapse occurs closer to sunset, implying a longer duration of the daytime convective instability. Around this period, the rover was located in the delta front in a location of complex topography where we observed stronger thermal gradients and intense daytime air temperature fluctuations. We also find in this place a nighttime event of gravity waves on near-surface air temperatures, with amplitudes of 2 K and periods of 10 min. These waves possibly propagate downward through a near isothermal stable layer.
期刊介绍:
The Journal of Geophysical Research Planets is dedicated to the publication of new and original research in the broad field of planetary science. Manuscripts concerning planetary geology, geophysics, geochemistry, atmospheres, and dynamics are appropriate for the journal when they increase knowledge about the processes that affect Solar System objects. Manuscripts concerning other planetary systems, exoplanets or Earth are welcome when presented in a comparative planetology perspective. Studies in the field of astrobiology will be considered when they have immediate consequences for the interpretation of planetary data. JGR: Planets does not publish manuscripts that deal with future missions and instrumentation, nor those that are primarily of an engineering interest. Instrument, calibration or data processing papers may be appropriate for the journal, but only when accompanied by scientific analysis and interpretation that increases understanding of the studied object. A manuscript that describes a new method or technique would be acceptable for JGR: Planets if it contained new and relevant scientific results obtained using the method. Review articles are generally not appropriate for JGR: Planets, but they may be considered if they form an integral part of a special issue.