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- W2033654943 abstract "Pulse tube coolers operating at higher frequency lead to a high energy density and result in a more compact system. This paper describes the performance of a 300 Hz pulse tube cooler driven by a linear compressor. Such high frequency operation leads to decreased thermal penetration, which requires a smaller hydraulic diameter and smaller wire diameter in the regenerator. In our previous experiments, the stainless steel mesh with a mesh number of 635 was used as the regenerator material, and a no-load temperature of 63 K was obtained. Both the numerical and experimental results indicate this material causes a large loss in the regenerator. A stainless steel fiber regenerator is introduced and studied in this article. Because this fiber has a wide range of wire diameter and porosity, such material might be more suitable for higher frequency pulse tube coolers. With the fiber as the regenerator material and after a series of optimizations, a no-load temperature of 45 K is acquired in the experiment. Influences of various parameters such as frequency and inertance tube length have been investigated experimentally." @default.
- W2033654943 created "2016-06-24" @default.
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- W2033654943 date "2014-01-01" @default.
- W2033654943 modified "2023-10-14" @default.
- W2033654943 title "Performance of a 260 Hz pulse tube cooler with metal fiber as the regenerator material" @default.
- W2033654943 cites W2015663107 @default.
- W2033654943 doi "https://doi.org/10.1063/1.4860753" @default.
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