超流体斯特林制冷机的热力学建模

George-Rafael Domenikos, P. Bitsikas, E. Rogdakis
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引用次数: 2

摘要

本文的目的是描述和热力学模型的低温斯特林制冷机,以不同形式的氦作为工作介质。氦在低温下具有独特的性质,形成超流体。在如此低的温度下使用氦的低温斯特林制冷机利用了氦的这种超流体性质,因此它们被称为超流体斯特林制冷机(SSR)。为了利用超流氦的这些显著特性,使用了一种不同版本的斯特林制冷机,在活塞中引入了超泄漏,以使超流部分自由流动,但限制了正常流体。这个冷却过程有一个温度上限,因为它是基于氦的超流动性,因此这个循环的所有工作都必须远远低于Lambda线。此外,由于氦的不同同位素的原子自旋性质不同,因此它们在接近绝对零度的温度下的行为不同,因此需要使用不同的模型。在SSR制冷机的研究中,非常注意整个系统和工质的热力学行为,以及设备的不同设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamic Modelling of Superfluid Stirling Cryocoolers
The aim of this paper is to describe and thermodynamically model cryogenic Stirling refrigerators, using Helium in its different forms as the working medium. Helium has unique properties at cryogenic temperatures forming a superfluid. The cryogenic Stirling refrigerators with Helium at such low temperatures make use of the properties of this superfluid nature of Helium, thus they are referred to as Superfluid Stirling Refrigerators (SSR). To make use of these remarkable properties of superfluid helium a different version of Stirling refrigerator is used where superleaks are introduced in the pistons in order to let the superfluid part flow freely but constrain the normal fluid. This cooling procedure has an upper temperature limit as it is based on the superfluidity of helium, hence all the workings of this cycle must be well below the Lambda line. In addition, different models are needed and are used for the different isotopes of helium as their atomic spin nature is different and therefore their behavior at temperatures near absolute zero. In this study of SSR cryocoolers great care is being given towards the thermodynamic behavior of the entire system and working media, as well as different designs of the apparatus.
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