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Two-Phase Thermal Switching System for a Small, Extended Duration Lunar Surface Science Platform

机译:小型,持续时间较长的月球表面科学平台的两相热交换系统

摘要

This paper describes a novel thermal control system for the Warm Electronics Box (WEB) on board a small lunar surface lander intended to support science activities anywhere on the lunar surface for an extended duration of up to 6 years. Virtually all lander electronics, which collectively dissipate about 60 W in the reference mission, are contained within the WEB. These devices must be maintained below 323 K (with a goal of 303 K) during the nearly 15-earth-day lunar day, when surface temperatures can reach 390K, and above 263 K during the nearly 15-earth-day lunar night, when surface temperatures can reach 100K. Because of the large temperature swing from lunar day-to-night, a novel thermal switching system was required that would be able to provide high conductance from WEB to radiator(s) during the hot lunar day and low (or negligible) conductance during the cold lunar night. The concept that was developed consists of ammonia variable conductance heat pipes (VCHPs) to collect heat from WEB components and a polymer wick propylene loop heat pipe (LHP) to transport the collected heat to the radiator(s). The VCHPs autonomously maximize transport when the WEB is warm and autonomously shut down when the WEB gets cold. The LHP autonomously shuts down when the VCHPs shut down. When the environment transitions from lunar night to day, the VCHPs and LHP autonomously turn back on. Out of 26 analyzed systems, this novel arrangement was able to best achieve the combined goals of zero control power, autonomous operation, long life, low complexity, low T, and landed tilt tolerance.
机译:本文介绍了一种新型的热控制系统,该系统用于小型月球登陆器上的暖电子箱(WEB),旨在在月球表面的任何地方支持长达6年的科学活动。几乎所有的着陆器电子设备(在参考任务中的总功耗约为60 W)都包含在WEB中。在接近地球的15天的白天,这些设备必须保持低于323 K(目标为303 K),而在接近地球15天的夜晚,这些设备必须保持在263 K以上。表面温度可以达到100K。由于从农历昼夜到晚上都有很大的温度波动,因此需要一种新颖的热开关系统,该系统应能够在炎热的农历白天提供从WEB到散热器的高电导,而在热阴天时则提供低(可忽略不计)的电导。阴冷的夜晚。开发的概念由氨可变电导率热管(VCHP)来收集来自WEB组件的热量,以及聚合物芯吸丙烯回路热管(LHP)来将收集的热量传输到散热器。 VCHP在WEB变热时自动最大化传输,而在WEB变冷时自动关闭传输。 VCHP关闭时,LHP自动关闭。当环境从阴夜转变为白天时,VCHP和LHP会自动重新打开。在26个分析的系统中,这种新颖的布置能够最好地实现零控制功率,自主运行,寿命长,低复杂度,低T和着陆倾斜公差的综合目标。

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