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首页> 外文期刊>International Journal of Refrigeration >Experimental investigation of different fluid flow profiles in a rotary multi-bed active magnetic regenerator device
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Experimental investigation of different fluid flow profiles in a rotary multi-bed active magnetic regenerator device

机译:旋转多层主动磁再生装置不同流体流动型材的实验研究

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摘要

A rotary multi-bed active magnetic regenerator (AMR) device was modified to allow testing different fluid flow waveforms, with different blow fractions (i.e., the fraction of the AMR cycle when there is fluid flow in the regenerators). The different values of blow fraction were generated using different cam rings that actuate the poppet valves at the inlet and outlet of the regenerators, controlling how long the valves stay open and the number of valves open at the same time. Results showed that smaller blow fractions yield higher values of temperature span for fixed flow rate and cooling capacity, but lower values of coefficient of performance for the same conditions. An analysis of the shaft and pumping powers showed that shorter blow fractions cause higher pressure drop and higher torque oscillations and mechanical vibrations. The highest value of second-law efficiency of 19.1% was obtained for the largest blow fraction tested (80%). Designs for magnetic refrigerators where the fluid flow waveform can change during operation are also discussed in this paper.
机译:改变旋转多床主动磁再生器(AMR)器件以允许测试不同的流体流动波形,具有不同的吹馏分(即,当在再生器中流体流动时,当存在流体流动时的AMR周期的一部分)。使用不同的凸轮环产生不同的吹孔的值,该不同的凸轮环产生致动在再生器的入口和出口处的提升阀,控制阀门保持打开的长度和同时打开的阀门的数量。结果表明,较小的吹馏分产生更高的温度跨度值,用于固定流量和冷却能力,但是对于相同条件的性能系数的值较低。轴和泵浦功率的分析表明,较短的吹馏分导致压降较高,扭矩振荡和机械振动更高。获得的最高效率为19.1%,获得最大的吹馏分(80%)。本文还讨论了流体流动波形可以在操作期间改变的磁冰箱的设计。

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  • 来源
  • 作者单位

    Department of Energy Conversion and Storage Technical University of Denmark;

    Department of Energy Conversion and Storage Technical University of Denmark;

    Department of Energy Conversion and Storage Technical University of Denmark;

    Department of Energy Conversion and Storage Technical University of Denmark;

    POLO – Research Laboratories for Emerging Technologies in Cooling and Thermophysics Department of Mechanical Engineering Federal University of Santa Catarina;

    POLO – Research Laboratories for Emerging Technologies in Cooling and Thermophysics Department of Mechanical Engineering Federal University of Santa Catarina;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 制冷理论;
  • 关键词

    Magnetic refrigerator; Regenerator; Experimentation; Efficiency;

    机译:磁冰箱;再生器;实验;效率;

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