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ENTRY DESCENT AND LANDING SYSTEMS FOR FUTURE MISSIONS

机译:未来任务的进入下降和着陆系统

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In 2005, the Huygens probe, designed by Thales Alenia Space France, successfully completed its entry and descent in Titan's atmosphere. In the frame of the Aurora Exploration Program, ESA initiated industrial studies for the ExoMars mission. Thales Alenia Space France-led consortium was awarded the contract for design, development and manufacturing of the Entry and Descent System under Thales Alenia Space-Italy mission prime. Huygens and ExoMars constitute major European milestones in the field of atmospheric entry and descent. Eight out of the ten bodies larger than Mercury in the Solar System have a significant atmosphere to descent in, either to reach a solid surface, or to explore the atmosphere itself. The gained experience in Entry Descent and Landing design will enhance European industry capability to contribute to future planetary exploration missions. This paper assesses the different environments and conditions that Entry Descent and Landing Systems will meet. It discusses how Europe's Huygens and ExoMars experience will apply in such environments and identifies the critical technologies needed to complement it. It concludes on the elements of a roadmap for the related technological development.
机译:2005年,由Thales Alenia Space France设计的惠更斯探测器成功完成了其在泰坦大气层的进入和下降。在Aurora勘探计划的框架内,ESA启动了ExoMars任务的工业研究。由Thales Alenia Space France领导的财团获得了Thales Alenia Space-Italy任务任务下的进出系统设计,开发和制造的合同。惠更斯和ExoMars构成了大气进入和下降领域的主要欧洲里程碑。在太阳系中,十个比水星大的天体中有八个有一个明显的大气层要下降,要么到达固体表面,要么探索大气层本身。在下降和着陆设计方面积累的经验将增强欧洲工业界为未来的行星探测任务做出贡献的能力。本文评估了进入下降和着陆系统将要满足的不同环境和条件。它讨论了欧洲的惠更斯和ExoMars经验将如何在这样的环境中应用,并确定了对其进行补充所需的关键技术。它总结了相关技术发展路线图的要素。

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