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Compact Water Vapor Exchanger for Regenerative Life Support Systems

机译:用于再生生命支持系统的紧凑型水蒸气交换器

摘要

Thermal and environmental control systems for future exploration spacecraft must meet challenging requirements for efficient operation and conservation of resources. Regenerative CO2 removal systems are attractive for these missions because they do not use consumable CO2 absorbers. However, these systems also absorb and vent water to space along with carbon dioxide. This paper describes an innovative device designed to minimize water lost from regenerative CO2 control systems. Design studies and proof-of-concept testing have shown the feasibility of a compact, efficient membrane water vapor exchanger (WVX) that will conserve water while meeting challenging requirements for operation on future spacecraft. Compared to conventional WVX designs, the innovative membrane WVX described here has the potential for high water recovery efficiency, compact size, and very low pressure losses. The key innovation is a method for maintaining highly uniform flow channels in a WVX core built from water-permeable membranes. The proof-of-concept WVX incorporates all the key design features of a prototypical unit, except that it is relatively small scale (1/23 relative to a unit sized for a crew of six) and some components were fabricated using non-prototypical methods. The proof-of-concept WVX achieved over 90% water recovery efficiency in a compact core in good agreement with analysis models. Furthermore the overall pressure drop is very small (less than 0.5 in. H2O, total for both flow streams) and meets requirements for service in environmental control and life support systems on future spacecraft. These results show that the WVX provides very uniform flow through flow channels for both the humid and dry streams. Measurements also show that CO2 diffusion through the water-permeable membranes will have negligible effect on the CO2 partial pressure in the spacecraft atmosphere.
机译:未来探索航天器的热和环境控制系统必须满足有效运行和资源节约的挑战性要求。对于这些任务,可再生的二氧化碳去除系统很有吸引力,因为它们不使用消耗性的二氧化碳吸收器。但是,这些系统还吸收水并将其与二氧化碳一起排入太空。本文介绍了一种创新设备,该设备旨在最大程度减少再生式CO2控制系统的水分流失。设计研究和概念验证测试表明,紧凑,高效的膜式水蒸气交换器(WVX)既可节水,又可满足未来航天器运行的严苛要求,具有可行性。与传统的WVX设计相比,此处介绍的创新型WVX膜具有较高的水回收效率,紧凑的尺寸和非常低的压力损失的潜力。关键创新是一种方法,该方法可在由透水膜制成的WVX纤芯中保持高度均匀的流道。概念验证WVX融合了原型单元的所有关键设计特征,但它的规模相对较小(相对于六人一组的单元为1/23),并且某些组件是使用非原型方法制造的。概念验证WVX在紧凑型岩心中与分析模型完全吻合,实现了90%以上的水回收效率。此外,总压降很小(小于0.5 in。H2O,两个流的总和),并且满足未来航天器在环境控制和生命支持系统中的服务要求。这些结果表明,WVX为湿流和干流提供了非常均匀的流道。测量还表明,CO2通过透水膜的扩散将对航天器大气中的CO2分压产生微不足道的影响。

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