首页> 外文期刊>Icarus: International Journal of Solar System Studies >First ever in situ observations of Venus' polar upper atmosphere density using the tracking data of the Venus Express Atmospheric Drag Experiment (VExADE)
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First ever in situ observations of Venus' polar upper atmosphere density using the tracking data of the Venus Express Atmospheric Drag Experiment (VExADE)

机译:使用金星快速大气阻力实验(VExADE)的跟踪数据进行的金星极地高层大气密度的首次现场观测

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On its highly elliptical 24. h orbit around Venus, the Venus Express (VEX) spacecraft briefly reaches a periapsis altitude of nominally 250. km. Recently, however, dedicated and intense radio tracking campaigns have taken place in August 2008, October 2009, February and April 2010, for which the periapsis altitude was lowered to the 186-176. km altitude range in order to be able to probe the upper atmosphere of Venus above the North Pole for the first time ever in situ. As the spacecraft experiences atmospheric drag, its trajectory is measurably perturbed during the periapsis pass, allowing us to infer total atmospheric mass density at the periapsis altitude. A Precise Orbit Determination (POD) of the VEX motion is performed through an iterative least-squares fitting process to the Doppler tracking data, acquired by the VEX radioscience experiment (VeRa). The drag acceleration is modelled using an initial atmospheric density model (VTS3 model, Hedin, A.E., Niemann, H.B., Kasprzak, W.T., Seiff, A. [1983]. J. Geophys. Res. 88, 73-83). A scale factor of the drag acceleration is estimated for each periapsis pass, which scales Hedin's density model in order to best fit the radio tracking data. Reliable density scale factors have been obtained for 10 passes mainly from the second (October 2009) and third (April 2010) VExADE campaigns, which indicate a lower density by a factor of about 1.8 than Hedin's model predicts. These first ever in situ polar density measurements at solar minimum have allowed us to construct a diffusive equilibrium density model for Venus' thermosphere, constrained in the lower thermosphere primarily by SPICAV-SOIR measurements and above 175. km by the VExADE drag measurements (Müller-Wodarg et al., in preparation). The preliminary results of the VExADE campaigns show that it is possible to obtain with the POD technique reliable estimates of Venus' upper atmosphere densities at an altitude of around 175. km. Future VExADE campaigns will benefit from the planned further lowering of VEX pericenter altitude to below 170. km.
机译:在其围绕金星的高度椭圆形的24. h轨道上,金星快车(VEX)航天器短暂到达名义上为250. km的围手术期高度。但是,最近在2008年8月,2009年10月,2月和2010年4月进行了专门的,密集的无线电跟踪运动,为此,围手术期的海拔降低到186-176。 km高度范围,以便能够在原位首次探测北极上方金星的高层大气。当航天器经历大气阻力时,其轨迹在根尖周通过期间可测量地被扰动,从而使我们能够推断出根尖周高度的总大气质量密度。 VEX运动的精确轨道确定(POD)通过对VEX放射科学实验(VeRa)获取的多普勒跟踪数据的最小二乘迭代过程进行。使用初始大气密度模型(VTS3模型,Hedin,A.E.,Niemann,HB,Kasprzak,W.T,Seiff,A。[1983] .J.Geophys.Res.88,73-83)对阻力加速度进行建模。估计每一次围手术通过的阻力加速度的比例因子,会缩放Hedin的密度模型,以最佳地拟合无线电跟踪数据。已经从第二次(2009年10月)和第三次(2010年4月)VExADE活动获得了10次传递的可靠密度比例因子,这表明密度比Hedin模型预测的低1.8倍。这些首次在太阳极低点进行的原位极性密度测量,使我们能够建立金星热圈的扩散平衡密度模型,该模型主要受SPICAV-SOIR测量限制在较低的热层,而受VExADE阻力测量限制在175. km以上(Müller- Wodarg等,正在准备中)。 VExADE活动的初步结果表明,可以使用POD技术获得大约175. km高度金星的高空大气密度的可靠估计。未来的VExADE运动将从计划将VEX中心高度进一步降低到170. km以下的计划中受益。

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