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“火星2020”毅力号探测器通过压力测量对杰泽罗上空火星大气的研究

Mars 2020 Perseverance Rover Studies of the Martian Atmosphere Over Jezero From Pressure Measurements.

作者信息

Sánchez-Lavega A, Del Rio-Gaztelurrutia T, Hueso R, Juárez M de la Torre, Martínez G M, Harri A-M, Genzer M, Hieta M, Polkko J, Rodríguez-Manfredi J A, Lemmon M T, Pla-García J, Toledo D, Vicente-Retortillo A, Viúdez-Moreiras D, Munguira A, Tamppari L K, Newman C, Gómez-Elvira J, Guzewich S, Bertrand T, Apéstigue V, Arruego I, Wolff M, Banfield D, Jaakonaho I, Mäkinen T

机构信息

UPV/EHU Bilbao Spain.

Jet Propulsion Laboratory/California Institute of Technology Pasadena CA USA.

出版信息

J Geophys Res Planets. 2023 Jan;128(1):e2022JE007480. doi: 10.1029/2022JE007480. Epub 2023 Jan 13.

Abstract

The pressure sensors on Mars rover Perseverance measure the pressure field in the Jezero crater on regular hourly basis starting in sol 15 after landing. The present study extends up to sol 460 encompassing the range of solar longitudes from  ∼ 13°-241° (Martian Year (MY) 36). The data show the changing daily pressure cycle, the sol-to-sol seasonal evolution of the mean pressure field driven by the CO sublimation and deposition cycle at the poles, the characterization of up to six components of the atmospheric tides and their relationship to dust content in the atmosphere. They also show the presence of wave disturbances with periods 2-5 sols, exploring their baroclinic nature, short period oscillations (mainly at night-time) in the range 8-24 min that we interpret as internal gravity waves, transient pressure drops with duration ∼1-150 s produced by vortices, and rapid turbulent fluctuations. We also analyze the effects on pressure measurements produced by a regional dust storm over Jezero at  ∼ 155°.

摘要

“毅力号”火星车搭载的压力传感器自着陆后的第15个火星日开始,每小时定期测量杰泽罗陨石坑内的压力场。本研究涵盖了从第15个火星日到第460个火星日的数据,其太阳经度范围约为13°至241°(火星年(MY)36)。数据显示了每日压力周期的变化、极地二氧化碳升华和沉积循环驱动的平均压力场的火星日到火星日的季节性演变、大气潮汐多达六个分量的特征及其与大气中尘埃含量的关系。数据还显示了周期为2至5个火星日的波动扰动的存在,探究了它们的斜压性质、8至24分钟范围内的短周期振荡(主要在夜间),我们将其解释为内重力波、由涡旋产生的持续时间约为1至150秒的瞬态压力下降,以及快速的湍流波动。我们还分析了在约155°处杰泽罗上空的一场区域性沙尘暴对压力测量产生的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2790/10078360/fbecb611f907/JGRE-128-0-g017.jpg

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