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Thermal Performance Model for Spacesuit Waste Heat Rejection Using Water Membrane Evaporators

机译:水膜蒸发器的太空削废料热排斥热性能模型

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Hydrophobic, micropore membrane evaporators are studied for use in waste heat rejection in new generation spacesuits developed by the U.S. National Aeronautics and Space Administration (NASA). The waste heat rejection is accomplished via evaporation of liquid water through membrane pores, whereby the hydrophobic membrane allows only water vapor to pass through and retains the liquid phase inside the membrane water channel, allowing the waste heat rejection through the proposed spacesuit water membrane evaporator (SWME) system to be significantly less sensitive to contamination while improving the overall contaminant and system control. Although SWME uses the same heat transport loop as used in current NASA sublimator systems, thus eliminating the need for a separate feedwater system, it permits the system configuration to be simpler and more compact while also eliminating corrosion problems and reducing system freeze-up potential. An improved thermal performance model based on membrane segment energy balances is presented, which is a spacesuit water membrane evaporator for a single circular annulus water channel bounded by two annular vapor channels. The model allows for the investigation of the local heat transfer characteristics along the annulus including temperature gradients in the membrane wall and the water channel using a steady-state approach. The model also accounts for the effects of thermal and hydraulic entry lengths, far field radiation, and energy carried away by the mass of water evaporation. The local heat transfer analysis enables the straightforward calculation of the overall magnitude of heat transfer from the SWME. A model validation is presented via the sum of the squares error analyses between the model predictions and the experimental results.
机译:研究了疏水性的微孔膜蒸发器,用于美国国家航空航天局(美国国家航空航天局)开发的新一代SPACESIGES中的废热排斥。通过膜孔蒸发蒸发液体水来完成废热排斥,由此疏水膜允许水蒸气通过并保留膜水通道内的液相,从而使废物排出通过所提出的太空飞膜水膜蒸发器( SWME)系统在改善整体污染物和系统控制的同时,对污染的系统显着敏感。虽然SWME使用当前NASA升华器系统中使用的相同的热传输回路,但是消除了对单独的供给水系统的需求,允许系统配置更简单,更紧凑,同时消除了腐蚀问题和减少系统冻结潜力。提出了一种基于膜段能量余量的改进的热性能模型,其是由两个环形蒸汽通道界定的单个圆环水通道的Spacesuit水膜蒸发器。该模型允许使用稳态方法的膜壁的温度梯度和水通道的局部传热特性来研究沿环形的局部传热特性。该模型还考虑了热和液压入口长度,远场辐射和通过水蒸发的质量传递的能量的影响。局部传热分析使得能够直接计算来自SWME的传热总量。通过模型预测和实验结果之间的平方误差分析的总和呈现模型验证。

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