首页> 外文会议>58th International Astronautical Congress 2007 >THE PUTATIVE MECHANICAL STRENGTH OF COMET SURFACE MATERIAL APPLIED TO LANDING ON A COMET
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THE PUTATIVE MECHANICAL STRENGTH OF COMET SURFACE MATERIAL APPLIED TO LANDING ON A COMET

机译:适用于落在彗星上的彗星表面材料的正机械强度

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The comet Lander PHILAE (part of the ESA mission ROSETTA) is going to touch down on comet 67P/Churyumov-Gerasimenko in 2014. Landing dynamics depend on the mechanical strength of the surface material: in an extremely soft material, the Lander (100 kg, 1 m/s touch-down velocity) may sink in too deep for successful operation while on a very hard surface the probability for bouncing and overturning increases. It is shown that direct knowledge on the strength of cometary surface material is very limited. In our view, even the Deep Impact experiment could not provide a reliable value of the mechanical strength of comet Tempel 1. We discuss the definition of "strength" and revise the ideas on cometary surface strength and theories that describe the low-velocity (≈1 m/s) impact of blunt bodies into dust-rich, fluffy cometary materials. Available direct and indirect measurements and data are critically reviewed. Lessons learnt from laboratory measurements to verify our equations of motion are presented as well. Conclusions for Philae are drawn: most likely, the soft landing will lead to a typical penetration of the Lander's feet of up to 20 cm.
机译:着陆器PHILAE彗星(欧空局ROSETTA任务的一部分)将于2014年着陆67P / Churyumov-Gerasimenko彗星。着陆动力学取决于表面材料的机械强度:在极软的材料中,着陆器(100千克) ,1 m / s的降落速度)可能会沉入太深,以至于无法成功进行操作,而在非常坚硬的表面上,弹跳和倾覆的可能性就会增加。结果表明,关于彗星表面材料强度的直接知识非常有限。我们认为,即使深度撞击实验也无法提供坦佩尔彗星1的机械强度的可靠值。我们讨论了“强度”的定义,并修改了有关彗星表面强度的思想以及描述低速运动的理论( 1 m / s)钝器撞击富含尘埃的蓬松彗星材料。严格审查了可用的直接和间接测量数据。还介绍了从实验室测量中学到的经验教训,以验证我们的运动方程。得出了Philae的结论:最有可能的是,软着陆将导致着陆器的脚典型地穿透达20厘米。

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