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Thermal Vacuum Test of Ice as a Phase Change Material Integrated with a Radiator

机译:集成散热器的相变材料冰的热真空测试

摘要

Water may be used as radiation shielding for Solar Particle Events (SPE) to protect crewmembers in the Lunar Electric Rover (LER). Because the water is already present for radiation protection, it could also provide a mass efficient solution to the vehicle's thermal control system. This water can be frozen by heat rejection from a radiator and used as a Phase Change Material (PC1V1) for thermal storage. Use of this water as a PCM can eliminate the need for a pumped fluid loop thermal control system as well as reduce the required size of the radiator. This paper describes the testing and analysis performed for the Rover Engineering Development Unit (REDU), a scaled-down version of a water PCM heat sink for the LER. The REDU was tested in a thermal-vacuum chamber at environmental temperatures similar to those of a horizontal radiator panel on the lunar surface. Testing included complete freeze and melt cycles along with scaled transient heat load profiles simulating a 24-hour day for the rover.
机译:水可以用作太阳粒子事件(SPE)的辐射屏蔽,以保护月球车(LER)中的机组人员。因为已经存在用于辐射防护的水,所以它也可以为车辆的热控制系统提供质量有效的解决方案。这些水可以通过散热器的散热而冻结,并用作相变材料(PC1V1)进行蓄热。使用这种水作为PCM可以消除对泵送流体回路热控制系统的需求,并减小所需的散热器尺寸。本文介绍了对流动站工程开发单元(REDU)进行的测试和分析,该单元是LER的水PCM散热器的缩小版本。在与月球表面水平散热器面板相似的环境温度下,在热真空室内对REDU进行了测试。测试包括完整的冻结和融化循环,以及按比例缩放的瞬态热负荷曲线,模拟流动站一天24小时的运行情况。

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