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Optimization of a Brayton cryocooler for ZBO liquid hydrogen storage in space

机译:用于太空中ZBO液态氢存储的Brayton低温冷却器的优化

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NASA is evaluating and developing technology for long-term storage of cryogenic propellant in space. A key technology is a cryogenic refrigerator which intercepts heat loads to the storage tank, resulting in a reduced- or zero-boil-off condition. Turbo-Brayton cryocoolers are particularly well suited for cryogen storage applications because the technology scales well to high capacities and low temperatures. In addition, the continuous-flow nature of the cycle allows direct cooling of the cryogen storage tank without mass and power penalties associated with a cryogenic heat transport system. To quantify the benefits and mature the cryocooler technology, Creare Inc. performed a design study and technology demonstration effort for NASA on a 20 W, 20 K cryocooler for liquid hydrogen storage. During the design study, we optimized these key components: three centrifugal compressors, a modular high-capacity plate-fin recuperator, and a single-stage turboalternator. The optimization of the compressors and turboalternator were supported by component testing. The optimized cryocooler has an overall flight mass of 88 kg and a specific power of 61 W/W. The coefficient of performance of the cryocooler is 23% of the Carnot cycle. This is significantly better performance than any 20 K space cryocooler existing or under development. (C) 2014 Elsevier Ltd. All rights reserved.
机译:NASA正在评估和开发低温推进剂在太空中长期储存的技术。一项关键技术是一种低温冰箱,该冰箱可以拦截储罐的热负荷,从而减少或减少零沸腾的情况。 Turbo-Brayton低温冷却器特别适合于制冷剂存储应用,因为该技术可以很好地扩展到高容量和低温。另外,循环的连续流动性质允许直接冷却制冷剂储罐,而没有与低温热传输系统相关的质量和功率损失。为了量化其优势并使低温冷却器技术成熟,Creare Inc.使用20 W,20 K液态氢存储低温冷却器对NASA进行了设计研究和技术演示。在设计研究过程中,我们优化了以下关键组件:三台离心压缩机,模块化大容量板翅式换热器和单级涡轮发电机。压缩机和涡轮发电机的优化得到组件测试的支持。经过优化的低温冷却器的总飞行质量为88千克,比功率为61 W / W。低温冷却器的性能系数为卡诺循环的23%。这比现有的或正在开发的任何20 K空间低温冷却器都具有更好的性能。 (C)2014 Elsevier Ltd.保留所有权利。

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