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The cooling concept of the X-ray telescope eROSITA

机译:X射线望远镜eROSITA的冷却概念

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eROSITA (extended ROentgen Survey with an Imaging Telescope Array) is the core instrument of the Russian SRG satellite which will be launched in 2011 into an orbit of 600 km height and 30° inclination. It is being developed by the Max-Planck-Institute fuer extraterrestrische Physik (MPE) in Garching, Germany.It comprises seven nested Wolter-I grazing incidence telescopes, each equipped with its own CCD camera. The seven eROSITA CCD cameras require a stable operating temperature of about (-80±0,5)°C. Therefore the thermal control system is vitally important.The cooling system consists of passive thermal control components only: two radiators, variable conductance heat pipes (VCHP) and two special thermal storage units.By reason of the low-earth-orbit and the special scan geometry it is impossible for one radiator to look into the cold space at all times. The cameras and the radiators are connected by variable conductance heat pipes which can be cut off when a radiator gets too warm. A novel "latent cold storage unit" guarantees an absolute constant temperature without any further control mechanism.
机译:eROSITA(带有成像望远镜阵列的扩展伦琴测量)是俄罗斯SRG卫星的核心仪器,将于2011年发射到600 km高和30°倾角的轨道。它是由德国Garching的Max-Planck-Institute fuer Extrarestrestrische Physik(MPE)开发的。 它包括七个嵌套的Wolter-I掠入射入射望远镜,每个望远镜都配备有自己的CCD摄像机。七个eROSITA CCD相机需要稳定的工作温度约为(-80±0.5)°C。因此,热控制系统至关重要。 冷却系统仅由被动热控制组件组成:两个散热器,可变电导率热管(VCHP)和两个特殊的蓄热单元。 由于低地球轨道和特殊的扫描几何形状,一个散热器不可能一直观察到寒冷的空间。摄像机和散热器通过电导率可变的热导管连接,当散热器温度过高时可以将其切断。新颖的“潜藏式冷库”可确保绝对恒定的温度,而无需任何其他控制机构。

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