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The New Mission of 'Rosetta' Comet Chaser and In-Orbit First Temperature Results

机译:“罗萨”彗星追逐者和轨道上的新任务和第一温度结果

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The Rosetta spacecraft was re-targeted to a newly selected comet following a one-year launch delay. The thermal control of the spacecraft has to cope with a large Sun distance range -0.88 to 5.35 AU-and increasing comet activity combined with operational conditions that span from full payload activity to power-saving hibernation mode. The new mission stretches the range of solar flux even further than the original mission and some adaptations to the thermal hardware were required. This paper describes how the new demanding mission scenario influenced the thermal design of the spacecraft and its operations. Then, the thermal behavior of the spacecraft as revealed by the first in-orbit results is evaluated and compared where possible with the response anticipated by the analyses and by the environmental thermal test program results. Rosetta was injected into an Earth escape trajectory on March 2, 2004 by an Ariane 5 dedicated launch.
机译:在一年的推出延迟之后,Rosetta SpaceCraft被重新定位到新选择的彗星。航天器的热控制必须应对大型太阳距离范围-0.88至5.35 AU和彗星活性,并将彗星活性与跨越从属有效载荷活动到节电休眠模式的操作条件。新的任务甚至比原来的任务更进一步地延伸了太阳能助焊剂的范围,并且需要一些适应热硬件。本文介绍了新苛刻的使命场景如何影响航天器的热设计及其运营。然后,通过分析预期的响应和环境热敏测试程序结果评估并比较了由第一轨道结果揭示的航天器的热行为。 Rosetta于2004年3月2日被Ariane 5专门发射注入了地球逃生轨迹。

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