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Influence of the flow rate waveform and mass imbalance on the performance of active magnetic regenerators. Part I: Experimental analysis

机译:流量波形和质量不平衡对主动磁再生器性能的影响。 第一部分:实验分析

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This is the first part of a two-part paper on the synchronization between the applied magnetic field and fluid displacement waveforms in a gadolinium packed sphere active magnetic regenerator (AMR) apparatus. For a rectified cosine magnetic field waveform, new rotary valves were developed to assess the influence of the duration of the fluid flow steps on the AMR performance. In order to correct flow imbalance effects caused by torque oscillations in the magnetic circuit and guarantee thermodynamically consistent conditions, a new criterion based on a mass imbalance parameter has been proposed. By keeping the displaced fluid mass fixed for a given utilization, the cooling capacity increased significantly with shorter blow times due to the higher fluid velocity and larger average magnetic field change. However, because of the associated increase in power consumption, an optimal blow time fraction of 45% was identified for operating frequencies of 0.25 and 0.5?Hz.
机译:这是两部分纸的第一部分,用于钆包装球体有源磁再生器(AMR)装置中的施加磁场和流体位移波形之间的同步。 对于整流余弦磁场波形,开发了新的旋转阀以评估流体流动步骤持续时间对AMR性能的影响。 为了校正由磁路中的扭矩振荡引起的流动不平衡效果并保证热力学上一致的条件,已经提出了一种基于质量不平衡参数的新标准。 通过保持用于给定利用的位移的液体质量,由于更高的流体速度和更大的平均磁场变化,冷却能力显着增加了较短的吹气时间。 但是,由于功耗相关的增加,鉴定了45%的最佳吹气时间分数,用于0.25和0.5℃的工作频率。

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