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Vapor Compression and Thermoelectric Heat Pumps for a Cascade Distillation Subsystem: Design and Experiment

机译:级联蒸馏子系统的蒸汽压缩和热电热泵:设计和实验

摘要

Humans on a spacecraft require significant amounts of water for drinking, food, hydration, and hygiene. Maximizing the reuse of wastewater while minimizing the use of consumables is critical for long duration space exploration. One of the more promising consumable-free methods of reclaiming wastewater is the distillation/condensation process used in the Cascade Distillation Subsystem (CDS). The CDS heats wastewater to the point of vaporization then condenses and cools the resulting water vapor. The CDS wastewater flow requires heating for evaporation and the product water flow requires cooling for condensation. Performing the heating and cooling processes separately would require two separate units, each of which would demand large amounts of electrical power. Mass, volume, and power efficiencies can be obtained by heating the wastewater and cooling the condensate in a single heat pump unit. The present work describes and compares two competing heat pump methodologies that meet the needs of the CDS: 1) a series of mini compressor vapor compression cycles and 2) a thermoelectric heat exchanger. In the paper, the CDS system level requirements are outlined, the designs of the two heat pumps are described in detail, and the results of heat pump analysis and performance tests are provided. The mass, volume, and power requirement for each heat pump option is compared and the advantages and disadvantages of each system are listed.
机译:乘坐航天器的人需要大量的水来饮用,食用,补充水分和保持卫生。最大限度地利用废水,同时最大程度地减少消耗品的使用,对于长时间太空探索至关重要。一种最有希望的无消耗废水回收方法是级联蒸馏子系统(CDS)中使用的蒸馏/冷凝过程。 CDS将废水加热到蒸发点,然后冷凝并冷却生成的水蒸气。 CDS废水流需要加热才能蒸发,而产品水流需要冷却才能冷凝。分别执行加热和冷却过程将需要两个单独的单元,每个单元将需要大量的电能。通过在单个热泵单元中加热废水并冷却冷凝液,可以获得质量,体积和功率效率。本工作描述并比较了满足CDS需求的两种竞争性热泵方法:1)一系列微型压缩机蒸气压缩循环和2)热电热交换器。本文概述了CDS系统级别的要求,详细介绍了两个热泵的设计,并提供了热泵分析和性能测试的结果。比较了每个热泵选件的质量,体积和功率要求,并列出了每个系统的优缺点。

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