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Phase Change Material Trade Study: A Comparison Between Wax and Water for Manned Spacecraft

机译:相变材料贸易研究:载人航天器蜡与水的比较

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摘要

Phase change material heat sinks have been recognized as an important tool in optimizing thermal control systems for space exploration vehicles and habitats that must deal with widely varying thermal loads and environments. In order to better focus technology investment in this arena, NASA has supported a trade study with the objective of identifying where the best potential pay-off can be found among identified aqueous and paraffin wax phase change materials and phase change material heat sink design approaches. The study used a representative exploration mission with well understood parameters to support the trade. Additional sensitivity studies were performed to ensure the applicability of study results across varying systems and destinations. Results from the study indicate that replacing a wax PCM heat sink with a water ice PCM heat sink has the potential to decrease the equivalent system mass of the mission s vehicle through a combination of a smaller heat sink and a slight 5% increase in radiator size or the addition of a lightweight heat pump. An evaluation of existing and emerging PCM heat sink technologies indicates that further mass savings should be achievable through continued development of those technologies. The largest mass savings may be realized by eliminating the melting and freezing pressure of wax and water, respectively.
机译:相变材料散热器已被公认为是优化空间探索飞行器和栖息地的热控制系统的重要工具,这些飞行器和栖息地必须处理各种热负荷和环境。为了更好地将技术投资集中在此领域,NASA支持了一项贸易研究,目的是确定在已确定的水性和石蜡相变材料以及相变材料散热器设计方法中,哪里可以找到最佳的潜在收益。该研究使用了具有代表性的,具有众所周知的参数的勘探任务来支持该交易。进行了其他敏感性研究,以确保研究结果在不同系统和目的地中的适用性。研究结果表明,用较小的散热器和散热器尺寸略微增加5%的组合,用水冰PCM散热器代替蜡PCM散热器有可能降低任务车辆的等效系统质量。或增加了轻巧的热泵。对现有和新兴的PCM散热器技术的评估表明,应通过不断开发这些技术来进一步节省质量。通过分别消除蜡和水的熔化和冷冻压力,可以实现最大的质量节省。

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