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Performance of Water Recirculation Loop Maintenance Components for the Advanced Spacesuit Water Membrane Evaporator

机译:水再循环环维性部件的性能为先进的太空服水膜蒸发器

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Water loop maintenance components to maintain the water quality of the Advanced Spacesuit Water Membrane Evaporation (SWME) water recirculation loop have undergone a comparative performance evaluation with a recirculating control loop which had no water quality maintenance. Results show that periodic water maintenance can improve performance of the SWME. The SWME is a heat rejection device under development at the NASA Johnson Space Center to perform thermal control for advanced spacesuits. One advantage of this technology is the potential for a significantly greater degree of tolerance to contamination when compared to the existing sublimator technology. The driver for the evaluation of water recirculation maintenance components was to enhance the robustness of the SWME through the leveraging of fluid loop management lessons learned from the International Space Station (ISS). A patented bed design that was developed for a United Technologies Aerospace System military application provided a low pressure drop means for water maintenance in the SWME recirculation loop. The bed design is coupled with high capacity ion exchange resins, organic adsorbents, and a cyclic methodology developed for the Extravehicular Mobility Unit (EMU) Transport Water loop. The maintenance cycle included the use of a biocide delivery component developed for the ISS to introduce a biocide in a microgravity compatible manner for the Internal Active Thermal Control System (IATCS). The leveraging of these water maintenance technologies to the SWME recirculation loop is a unique demonstration of applying the valuable lessons learned on the ISS to the next generation of manned spaceflight Environmental Control and Life Support System (ECLSS) hardware.
机译:水循环维护部件保持水质的水质水质水膜蒸发(SWME)水再循环回路经历了对比较性能评价,其循环控制回路没有水质维护。结果表明,周期性水维护可以提高SWME的性能。 SWME是NASA Johnson Space Centa开发的散热装置,为高级SPACESINE进行热控制。与现有的升华器技术相比,该技术的一个优点是对污染的耐受性显着更大的耐受性。评估水再循环维护部件的驾驶员是通过利用来自国际空间站(ISS)的流体回路管理经验教训来增强SWME的稳健性。为联合技术航空航天系统开发的专利床设计提供了一种低压下降装置,用于SWME再循环回路中的水维护。床设计与高容量离子交换树脂,有机吸附剂和为套管迁移率单位(EMU)运输水循环开发的循环方法。维护循环包括使用开发的杀生物剂递送组分,以将杀生物剂以微重力兼容的方式引入内部有源热控制系统(IATCS)。利用这些水维护技术对SWME再循环回路是应用于在下一代载人航天环境控制和生命支持系统(ECLS)硬件的下一代载人航天环境控制和生命支持系统(ECLS)硬件上的唯一展示。

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