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Determining Thermal Capabilities for External Transfer Operations on the International Space Station

机译:确定国际空间站外部传输操作的热能

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External transfers on the International Space Station have a degree of difficulty caused by the severity of the radiative thermal environment and the complexity of the operational choreography to perform the installation and activation of the hardware. These transfers can be performed robotically, by astronauts during an Extra Vehicular Activity (spacewalk), or combination of robotic/crew operations. Robotic transfers may include capability to intermittently power the hardware; while the hardware remains unpowered for EVA operations. Robotic transfers can be staged to occur in a favorable thermal environment, though typically take longer than a transfer by crew during an EVA where the hardware may not be robotically compatible. The hardware is under passive thermal control, use of optics/ multi-layer insulation/heaters, while being transferred from/to a visiting vehicle, airlock, stowage platform, or external ISS structure and may include additional design components, such as removable protective blankets, to meet the transfer requirements. Thermal analysis must be performed to determine the capability of the hardware being transferred to provide the Mission Control team the products necessary to plan and execute the operation while establishing an awareness for any contingency response. An overview of the thermal aspects in planning these types of transfer operations, the analytical approaches and assumptions, and examples of results are provided in this paper.
机译:国际空间站上的外部传输具有由辐射热环境的严重程度以及操作编排的复杂性引起的难度,以执行硬件的安装和激活。这些转移可以通过乘机在额外的车辆活动(太空行走)或机器人/船员操作的组合期间通过宇航员进行机器人。机器人传输可以包括间歇地为硬件供电的能力;虽然硬件对EVA操作保持不受授权。机器人转移可以在良好的热环境中进行阶段,但通常需要长于在硬件可能不具有机器人兼容的EVA期间的机组的转移。该硬件在被动热控制下,使用光学/多层绝缘/加热器,同时从/到访问车辆,气闸,汇图平台或外部ISS结构,并且可以包括额外的设计部件,例如可拆卸的防护毯,满足转移要求。必须执行热分析以确定转移的硬件的能力,以提供特派团控制团队在为任何应急响应建立意识的同时规划和执行操作所需的产品。本文提供了规划这些类型的转移操作,分析方法和假设以及分析方法和假设的热方面的概述。

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