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Uranus Pathfinder: Exploring the origins and evolution of Ice Giant planets

机译:天王星探路者:探索冰巨行星的起源和演化

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The "Ice Giants" Uranus and Neptune are a different class of planet compared to Jupiter and Saturn. Studying these objects is important for furthering our understanding of the formation and evolution of the planets, and unravelling the fundamental physical and chemical processes in the Solar System. The importance of filling these gaps in our knowledge of the Solar System is particularly acute when trying to apply our understanding to the numerous planetary systems that have been discovered around other stars. The Uranus Pathfinder (UP) mission thus represents the quintessential aspects of the objectives of the European planetary community as expressed in ESA's Cosmic Vision 2015-2025. UP was proposed to the European Space Agency's M3 call for medium-class missions in 2010 and proposed to be the first orbiter of an Ice Giant planet. As the most accessible Ice Giant within the M-class mission envelope Uranus was identified as the mission target. Although not selected for this call the UP mission concept provides a baseline framework for the exploration of Uranus with existing low-cost platforms and underlines the need to develop power sources suitable for the outer Solar System. The UP science case is based around exploring the origins, evolution, and processes at work in Ice Giant planetary systems. Three broad themes were identified: (1) Uranus as an Ice Giant, (2) An Ice Giant planetary system, and (3) An asymmetric magnetosphere. Due to the long interplanetary transfer from Earth to Uranus a significant cruise-phase science theme was also developed. The UP mission concept calls for the use of a Mars Express/Rosetta-type platform to launch on a Soyuz-Fregat in 2021 and entering into an eccentric polar orbit around Uranus in the 2036-2037 timeframe. The science payload has a strong heritage in Europe and beyond and requires no significant technology developments.
机译:与木星和土星相比,“冰巨人”天王星和海王星是另一类行星。研究这些物体对于增进我们对行星的形成和演化的理解,并揭示太阳系中基本的物理和化学过程至关重要。当试图将我们的理解应用于在其他恒星周围发现的众多行星系统时,填补这些差距对我们对太阳系的认识尤为重要。因此,天王星探路者(UP)任务代表了欧洲行星共同体目标的精髓所在,正如ESA的《 2015-2025年宇宙愿景》所表达的那样。 UP是在2010年欧洲航天局M3进行中型飞行任务时提出的,并被提议成为“冰巨人”行星的第一个轨道器。天王星是M级任务信封中最容易接近的冰巨人,被确定为任务目标。尽管没有为此任务选择,但UP任务概念为使用现有的低成本平台勘探天王星提供了基线框架,并强调了开发适合外部太阳系的电源的需求。 UP科学案例基于探索“冰巨人”行星系统的起源,演化和工作过程。确定了三个广泛的主题:(1)天王星是一个冰巨人,(2)一个冰巨人的行星系统,以及(3)一个不对称的磁层。由于从地球到天王星的长时间行星际转移,一个重要的巡航阶段科学主题也得到了发展。 UP任务概念要求使用Mars Express / Rosetta型平台于2021年在Soyuz-Fregat上发射,并在2036-2037年进入围绕天王星的偏心极轨道。科学有效载荷在欧洲及其他地区具有悠久的历史,不需要重大的技术开发。

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