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Modeling of Chill Down in Cryogenic Transfer Lines

机译:低温传输线中的降温建模

摘要

A numerical model to predict chill down in cryogenic transfer lines has been developed. Three chill down cases using hydrogen as the working fluid are solved: 1) a simplified model amenable to analytical solution, 2) a realistic model of superheated vapor flow, and 3) a realistic model of initially subcooled liquid flow. The first case compares a numerical model with an analytical solution with very good agreement between the two. Additionally, the analytical solution provides a convenient way to look at parametric effects on the chill down. The second and third cases are numerical models which provide temperature histories of the fluid and solid tube wall during chill down as well as several other quantities of interest such as pressure and mass flow rate. Of great interest is the ability to predict accurate values of chill down time (the time required to achieve steady-state cryogenic flow). The models predict that a 26 in. long, 3/16 in. ID aluminum tube has a shorter chill down time (approx. equal to 100 sec) and uses less hydrogen with superheated vapor flow than with initially subcooled liquid flow (greater than 200 sec for chill down).
机译:已经开发了预测低温传输线中冷却的数值模型。解决了使用氢作为工作流体的三种冷却情况:1)适于分析解决方案的简化模型; 2)过热蒸汽流的真实模型; 3)最初过冷的液体流的真实模型。第一种情况是将数值模型与解析解进行比较,两者之间具有很好的一致性。此外,分析解决方案还提供了一种方便的方法来查看对冷却的参数影响。第二和第三种情况是数值模型,提供了冷却期间流体和固体管壁的温度历史记录以及其他一些令人关注的数量,例如压力和质量流量。预测冷却时间(达到稳态低温流动所需的时间)的准确值的能力是人们最感兴趣的。该模型预测,内径为26英寸,3/16英寸的铝管的冷却时间较短(约等于100秒),并且在过热蒸汽流中使用的氢气比在最初过冷的液体流中使用的氢气少(大于200)秒放松一下)。

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