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Sensitivity of Micromachined Joule-Thomson Cooler to Clogging Due to Moisture

机译:微机焦耳-汤姆逊冷却器对水分阻塞的敏感性

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摘要

A major issue in long-term operation of micromachined Joule-Thomson coolers is the clogging of the microchannels and/or the restriction due to the deposition of water molecules present in the working fluid. In this study, we present the performance of a microcooler operated with nitrogen gas with different moisture levels. Relatively low-purity nitrogen gas (5.0) is supplied from a gas bottle and led through a filter to control the moisture level. The filter consists of a tube-in-tube counter flow heat exchanger (CFHX) and a heat exchanger that is stabilized at a certain temperature by using a Stirling cooler. The set-point temperature determines the moisture level at the exit of the heat exchanger. It is found that the moisture level has influence on the mass-flow rate during the cool down. Once the microcooler reaches the set cold-end temperature, the main deposition area shifts into the CFHX and the moisture level at the restriction is almost independent on the inlet moisture level of the microcooler. The moisture level at the restriction increases with the increasing cold-end temperature when the cold-end temperature is lower than the saturation temperature of the water in the nitrogen gas. Higher cold-end temperature results in higher clogging rate.
机译:微机焦耳-汤姆逊冷却器的长期运行中的一个主要问题是微通道的堵塞和/或由于工作流体中存在的水分子的沉积而造成的限制。在这项研究中,我们介绍了使用具有不同水分含量的氮气运行的微型冷却器的性能。从气瓶中提供相对较低纯度的氮气(5.0),并使其通过过滤器以控制水分含量。该过滤器由一个管对流热交换器(CFHX)和一个通过使用斯特林冷却器稳定在一定温度下的热交换器组成。设定点温度决定了热交换器出口处的水分含量。发现在冷却期间,水分含量对质量流率有影响。一旦微型冷却器达到设定的冷端温度,主沉积区域将移至CFHX,并且限制处的水分水平几乎与微型冷却器的入口水分水平无关。当冷端温度低于氮气中水的饱和温度时,限制条件下的水分含量随冷端温度的升高而增加。较高的冷端温度导致较高的堵塞率。

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