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Thruster Plumes: Sources for High Pressure and Contamination at the Payload Location

机译:推力器羽流:有效载荷位置的高压和污染源

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The ESA comet mission Rosetta was launched in early March 2004. The goal of this mission is the rendezvous with comet 67P/Churyumov-Gerasimenko in 2014. The spacecraft will then accompany the comet toward the sun for about one year. During this close encounter the evolution of the nucleus and the coma will be monitored and analyzed. One of the instruments onboard is the comet pressure sensor. Two gauges are integrated in the sensor, which allow the measurement of the dynamic pressure and the total neutral particle density in the cometary coma. From these measurements the expansion velocity of the coma can be derived. Starting shortly after launch, during a time period of about two years, several tests and background measurements of the total particle density in the vicinity of the spacecraft were made. Some data were collected during the Rosetta thruster firing cycles, which show a huge pressure increase during thruster operation by several orders of magnitude above the background pressure. After a two-year flight duration, the background pressure around the spacecraft is about 2 × 10~(-11) mbar, whereas values up to 1 × 10~(-5) mbar have been recorded during the thruster operation. Such high pressures might induce, in the worst case, high-voltage discharges as well as be responsible for a contamination layer on sensitive exposed surfaces of the payload.
机译:ESA彗星任务罗塞塔(Rosetta)于2004年3月开始发射。该任务的目标是在2014年与67P / Churyumov-Gerasimenko彗星会合。然后,飞船将与彗星一起向太阳飞行约一年。在这种亲密接触期间,将监测和分析核和昏迷的演变。机载仪器之一是彗星压力传感器。传感器中集成了两个仪表,可以测量彗星彗形象差中的动态压力和总中性粒子密度。从这些测量结果可以得出昏迷的扩张速度。发射后不久开始,在大约两年的时间里,对航天器附近的总粒子密度进行了几次测试和背景测量。在Rosetta推进器点火周期中收集了一些数据,这些数据表明在推进器运行过程中压力大幅增加,比背景压力高几个数量级。经过两年的飞行时间,航天器周围的背景压力约为2×10〜(-11)mbar,而在推进器运行期间记录到的压力高达1×10〜(-5)mbar。在最坏的情况下,这样的高压可能会引起高压放电,并造成有效负载敏感外露表面上的污染层。

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