木星系统成像光谱仪热机械设计可行性研究

B. Saggin, D. Scaccabarozzi, M. Tarabini, G. Piccioni
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引用次数: 3

摘要

卫星和木星成像光谱仪是为欧空局木星冰卫星探测任务设计的一项实验。该仪器将在可见光和近红外范围内进行成像光谱研究伽利略系统。这项工作的重点是热机械设计研究,以评估仪器的可行性。热设计基于完全被动冷却,为红外探测器提供低于90 K的工作温度,为光学工作台提供低于140 K的工作温度。这是为了减少探测器噪声和背景辐射对测量信号的干扰。该仪器安装在工作温度在-10到20°C之间的航天器上。因此,结构设计是由最小化仪器支撑结构的热导的要求驱动的,另一方面,它必须提供容纳仪器光学头和散热器所需的强度和刚度。对不同的机械和热布局进行了研究和比较。所有设想的配置都允许实现预期的设计需求,尽管与强加的约束有不同的余量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermo-mechanical design feasibility study of an Imaging Spectrometer for the Jovian system
The Moons And Jupiter Imaging Spectrometer is an experiment designed for the Jupiter Icy Moons Explorer ESA mission. The instrument will perform imaging spectroscopy in the visible and near infrared ranges to study the Galilean System. This work focuses on the thermo-mechanical design study performed to assess the instrument feasibility. The thermal design is based on a completely passive cooling, providing operational temperatures lower than 90 K, for the infrared detector, and lower than 140 K for the optical bench. These are required to reduce detector noise and background radiation disturbances on the measured signals. The instrument is mounted on a spacecraft whose temperature during operation is between -10 to 20 °C. Therefore, structural design is driven by the requirement of minimizing the thermal conductance of the instrument supporting structure, which, on the other hand, has to provide strength and stiffness required to hold the instrument optical head and radiators. Different mechanical and thermal layouts have been studied and compared. All the conceived configurations allow achieving the expected design requirements although with different margins with respect to the imposed constraints.
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