论文标题
揭示金星的奥秘:达芬奇任务
Revealing the Mysteries of Venus: The DAVINCI Mission
论文作者
论文摘要
对本文所述的贵重气体,化学和成像(Davinci)任务的深度氛围调查已被选为NASA发现计划的一部分飞往金星。 Davinci将是金星将科学驱动的Flybys和乐器下降球纳入统一建筑的第一个任务。预期的科学结果将是对金星作为一个可能曾经可持续的行星的大气,表面和进化路径的新理解,而对热地面系外行星的类似物也是如此。 Davinci作为选定的主要任务设计是2029年夏季/秋季的首选发射,在2031年底之前进行了两个Flybys和Descent Sphere大气进入。到2031年底。原位大气下降阶段,随后在Alpha Quarpha Quarpha Quarpha Quarpha Quarpha Quarpha cartect proce的情况下提供明确的化学和同位素组成。这些对表面的大气和近红外下降成像的原位研究将补充动态大气,云甲板和近红外发射率的远程飞行观测。总体任务产量将至少有60 GBITS(压缩)有关大气和近表面的新数据,以及深层大气环境和化学的首次独特表征,包括痕量气体,关键稳定的同位素,氧气散热,局部岩石组合物的限制以及Tessera的地形。
The Deep Atmosphere Venus Investigation of Noble gases, Chemistry, and Imaging (DAVINCI) mission described herein has been selected for flight to Venus as part of the NASA Discovery Program. DAVINCI will be the first mission to Venus to incorporate science-driven flybys and an instrumented descent sphere into a unified architecture. The anticipated scientific outcome will be a new understanding of the atmosphere, surface, and evolutionary path of Venus as a possibly once-habitable planet and analog to hot terrestrial exoplanets. The primary mission design for DAVINCI as selected features a preferred launch in summer/fall 2029, two flybys in 2030, and descent sphere atmospheric entry by the end of 2031. The in situ atmospheric descent phase subsequently delivers definitive chemical and isotopic composition of the Venus atmosphere during a cloud-top to surface transect above Alpha Regio. These in situ investigations of the atmosphere and near infrared descent imaging of the surface will complement remote flyby observations of the dynamic atmosphere, cloud deck, and surface near infrared emissivity. The overall mission yield will be at least 60 Gbits (compressed) new data about the atmosphere and near surface, as well as first unique characterization of the deep atmosphere environment and chemistry, including trace gases, key stable isotopes, oxygen fugacity, constraints on local rock compositions, and topography of a tessera.