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Design and Analysis of a Nested Halbach Permanent Magnet Magnetic Refrigerator.

机译:嵌套式Halbach永磁磁性冰箱的设计与分析。

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摘要

A technology with the potential to create efficient and compact refrigeration devices is an active magnetic regenerative refrigerator (AMRR). AMRRs exploit the magnetocaloric effect displayed by magnetic materials whereby a reversible temperature change is induced when the material is exposed to a change in applied magnetic field. By using the magnetic materials in a regenerator as the heat storage medium and as the means of work input, one creates an active magnetic regenerator (AMR). Although several laboratory devices have been developed, no design has yet demonstrated the performance, reliability, and cost needed to compete with traditional vapor compression refrigerators. There are many reasons for this and questions remain as to the actual potential of the technology.;The objective of the work described in this thesis is to quantify the actual and potential performance of a permanent magnet AMR system. A specific device configuration known as a dual-nested-Halbach system is studied in detail. A laboratory scale device is created and characterized over a wide range of operating parameters. A numerical model of the device is created and validated against experimental data. The resulting model is used to create a cost-minimization tool to analyze the conditions needed to achieve specified cost and efficiency targets.;Experimental results include cooling power, temperature span, pumping power and work input. Although the magnetocaloric effect of gadolinium is small, temperature spans up to 30 K are obtained. Analysis of power input shows that the inherent magnetic work is a small fraction of the total work input confirming the assumption that potential cycle efficiencies can be large. Optimization of the device generates a number of areas for improvement and specific results depend upon targeted temperature spans and cooling powers. A competitive cost of cooling from a dual-nested-Halbach configuration is challenging and will depend on the ability to create regenerator matrices with near-ideal adiabatic temperature change scaling as a function of temperature.
机译:有源磁蓄冷式制冷机(AMRR)是一种有可能创造出高效紧凑的制冷设备的技术。 AMRR利用磁性材料显示的磁热效应,从而当材料暴露于施加的磁场变化中时,会引起可逆的温度变化。通过将蓄热器中的磁性材料用作储热介质并作为工作输入手段,可以创建一个有源磁蓄热器(AMR)。尽管已经开发了几种实验室设备,但尚无设计能够证明与传统蒸汽压缩冰箱竞争所需的性能,可靠性和成本。造成这种情况的原因有很多,并且对该技术的实际潜力仍有疑问。本文所研究工作的目的是量化永磁AMR系统的实际和潜在性能。详细研究了一种称为双嵌套Halbach系统的特定设备配置。创建了实验室规模的设备,并在广泛的操作参数上进行了表征。创建设备的数值模型,并针对实验数据进行验证。所得模型用于创建成本最小化工具,以分析实现特定成本和效率目标所需的条件。实验结果包括冷却功率,温度跨度,泵送功率和工作投入。尽管of的磁热效应很小,但可获得高达30 K的温度跨度。对功率输入的分析表明,固有的磁功仅占总功输入的一小部分,从而证实了潜在的循环效率可能很高的假设。设备的优化产生了许多需要改进的地方,具体结果取决于目标温度范围和冷却功率。采用双嵌套式哈尔巴赫(Nalbach)配置进行冷却的竞争成本极具挑战性,这将取决于创建蓄热器矩阵的能力,其中蓄热器矩阵的绝热温度变化随温度的变化而变化。

著录项

  • 作者

    Tura, Armando.;

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Engineering Mechanical.;Energy.;Physics Electricity and Magnetism.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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