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Thermodynamic optimization of sorption-based Joule-Thomson coolers

机译:基于吸附的焦耳-汤姆逊冷却器的热力学优化

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A cooler consisting of a sorption compressor with a Joule-Thomson (JT) cold stage has several advantages. These coolers have no moving parts which is attractive for a variety of reasons. Unfortunately, the efficiency of sorption-based JT coolers is in many cases relatively small. This paper presents a thermodynamic description of the compressor and the cold stage separately. Their efficiencies are optimized individually. Besides, an optimization of the total cooler is performed. Furthermore, the thermodynamic impact of design changes to improve these efficiencies is discussed. The efficiency of the sorption compressor can be increased significantly by incorporating two-stage compression. The efficiency of the cold stage can largely be increased by precooling. Generally, a TE cooler is used for this purpose. Two-stage compression opens the opportunity to integrate a JT precooler into the cold stage that is driven by the pressure difference created by the second compression stage. Also an additional sorption cooler can be used for this purpose. A case study is performed for nitrogen as the working gas and both Saran and Maxsorb as the adsorbent. Four cooler configurations are thermodynamically compared. In this study, the cooler efficiency increases by a factor of 3 by the application of two-stage compression compared to single-stage compression. Another factor of 3 is obtained by using an internal JT precooler. Incorporating an external sorption cooler as a precooler gives a further improvement with nearly a factor of 2, resulting in a 17 times larger efficiency compared to single-stage compression. Depending on the configuration, a Saran-based cooler has a 1.5-2 times better efficiency than a cooler operating with Maxsorb.
机译:由吸附式压缩机和焦耳-汤姆森(JT)冷段组成的冷却器具有多个优点。这些冷却器没有活动部件,由于多种原因,它们具有吸引力。不幸的是,在许多情况下,基于吸附的JT冷却器的效率相对较低。本文分别介绍了压缩机和冷态的热力学描述。它们的效率是单独优化的。此外,对总冷却器进行了优化。此外,还讨论了设计更改对热效率的影响,以提高这些效率。通过合并两级压缩,可以显着提高吸附压缩机的效率。通过预冷可以大大提高冷段的效率。通常,TE冷却器用于此目的。两级压缩为将JT预冷器集成到冷级提供了机会,冷风由第二级压缩产生的压差驱动。也可以为此目的使用一个附加的吸附冷却器。对氮气作为工作气体,而Saran和Maxsorb均作为吸附剂进行了案例研究。对四种冷却器配置进行了热力学比较。在本研究中,与单级压缩相比,通过采用两级压缩,冷却器效率提高了3倍。通过使用内部JT预冷器可获得另一个系数3。将外部吸收式冷却器作为预冷却器,可以进一步改善,效率几乎提高了2倍,与单级压缩相比,效率提高了17倍。根据配置,基于Saran的冷却器的效率比使用Maxsorb的冷却器高1.5-2倍。

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