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基于无线电掩星观测的火星高层大气研究 被引量:3
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作者 秦珺峰 邹鸿 叶雨光 《航天器环境工程》 2019年第6期571-583,共13页
近年来,火星高层大气受到越来越多的关注和研究。由于缺乏磁场的阻挡,火星高层大气与星际空间环境关联密切;同时,低层大气中的活动(例如尘暴)也会对其造成影响。而耦合在火星高层大气中的电离层则使这些过程变得更加复杂。火星高层大气... 近年来,火星高层大气受到越来越多的关注和研究。由于缺乏磁场的阻挡,火星高层大气与星际空间环境关联密切;同时,低层大气中的活动(例如尘暴)也会对其造成影响。而耦合在火星高层大气中的电离层则使这些过程变得更加复杂。火星高层大气和电离层结构的变化会对火星探测和通信活动造成很大的影响。然而,目前人们对火星高层大气100~130 km高度长期、稳定的观测数据仍然相对较少。文章将首先介绍火星高层大气研究的历史和现状,然后分别介绍本研究组利用无线电掩星实验获取火星130 km中性大气密度的方法、主要成果及未来的工作。 展开更多
关键词 无线电掩星观测 火星高层大气 火星电离层 火星大气数据库 火星尘暴
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Quasi-stationary planetary waves in the middle atmosphere of Mars
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作者 WANG NingNing LI Tao DOU XianKang 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第2期309-316,共8页
Using the temperature profiles retrieved from the Mars Climate Sounder(MCS) instrument onboard Mars Reconnaissance Orbiter(MRO) satellite between November 2006 and April 2013, we studied the seasonal and interannu... Using the temperature profiles retrieved from the Mars Climate Sounder(MCS) instrument onboard Mars Reconnaissance Orbiter(MRO) satellite between November 2006 and April 2013, we studied the seasonal and interannual variability of QuasiStationary Planetary Waves(QSPWs) in the Martian middle atmosphere. The QSPW amplitudes in the Southern Hemisphere(SH) high latitudes are significantly stronger than those in the Northern Hemisphere(NH). Seasonal variation with maximum amplitude near winter solstice of each hemisphere is clearly seen. The vertical structure of the QSPW in temperature shows double-layer feature with one peak near 50 Pa and the other peak near 1 Pa. The QSPW in geopotential height is clearly maximized in the region between two temperature peaks. The maximum amplitude of QSPW for s=1 is ~8–10 K in temperature and ~1 km in geopotential height in the SH high latitudes. The maximum amplitude at the SH high latitudes in Mars Year(MY) 31 is ~2 K stronger than those in other MYs, suggesting the clear interannual variability. We compared the satellite results with those obtained from the Mars Climate Database(MCD) simulation version 5.0; a reasonable agreement was found. The MCD simulation further suggested that the variability of dust might partially contribute to the interannual variability of QSPW amplitude. 展开更多
关键词 interannual planetary winter seasonal stationary stronger latitude hemisphere altitude reconstructed
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