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首页> 外文期刊>International Journal of Refrigeration >Temperature dependent thermal conductivity of magnetocaloric materials: Impact assessment on the performance of active magnetic regenerative refrigerators
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Temperature dependent thermal conductivity of magnetocaloric materials: Impact assessment on the performance of active magnetic regenerative refrigerators

机译:磁热材料温度依赖导热系数:对主动磁再生冰箱性能的影响评估

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摘要

Due to the dynamic nature of the active magnetic regenerative mechanism in magnetocaloric refrigeration, the thermal conductivity of the refrigerant is a critical parameter. Experimental studies have shown how the thermal conductivity of high-performance magnetic refrigerants can drastically change around their Curie temperatures (T-C). However, this fact has been largely ignored in the numerical simulation of devices, raising the need to assess the impact of this approximation, particularly when the simulations are aimed at optimizing or dimensioning a particular device geometry. In this paper we show how, by employing a unidimensional numerical model of a magnetic refrigerator with parallel plates, two different temperature dependent thermal conductivity scenarios of the refrigerant affect the resulting temperature span and cooling power. By considering a gadolinium-like material as the refrigerant with thermal conductivities varying 50% near its T-C, a change of the resulting device temperature span of similar to 15% is reached. The cooling power is also affected, changing also similar to 15% when the considered systems are at half their respective maximum temperature span. Our results are also discussed in terms of other geometries where the impact of these effects can be even larger, namely in cases where the axial thermal conduction in the AMR element is not negligible, or the time-scale of longitudinal thermal processes has a larger impact on the optimum operating frequency. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:由于磁热制冷中的主动磁再生机构的动态性质,制冷剂的导热率是关键参数。实验研究表明,高性能磁制冷剂的导热率如何围绕其居里温度(T-C)彻底改变。然而,这一事实在设备的数值模拟中已经很大程度上被忽略了,提高了评估该近似的影响的需要,特别是当模拟旨在优化或尺寸的特定设备几何形状时。在本文中,我们通过采用具有平行板的磁冰箱的单向数值模型来展示如何,两个不同的温度依赖导热率场景的制冷剂影响所得到的温度跨度和冷却功率。通过考虑像制冷剂的钆样材料,在其T-C附近变化50%的热导体,达到所得装置温度跨度的变化与15%相似。冷却功率也受到影响,当考虑的系统处于各自的最大温度跨度的一半时,变化也类似于15%。我们的结果也在其他几何形状方面讨论,其中这些效果的影响甚至更大,即在AMR元件中的轴向热传导的情况下不可忽略的情况下,或纵向热过程的时间尺度具有更大的影响在最佳工作频率上。 (c)2019年Elsevier Ltd和IIR。版权所有。

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