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首页> 外文期刊>International journal of ambient energy >Magnetic refrigeration: a promising new technology for energy saving
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Magnetic refrigeration: a promising new technology for energy saving

机译:磁制冷:一种有前途的节能新技术

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摘要

Magnetic refrigeration is an emerging, environment-friendly technology based on a magnetic solid that acts as a refrigerant by magnetocaloric effect. The reference cycle for magnetic refrigeration is AMR (Active Magnetic Regenerative refrigeration). In this paper, attention is directed towards the near-room-temperature range. We compare the energetic performance of a commercial R134a refrigeration plant to that of a magnetic refrigerator working with an AMR cycle. The comparison is carried out by means of a mathematical model. In these simulations, we consider different solid magnetic refrigerants, namely, Gd, Gd_(0.95)Dy_(0.05), Gd_(0.9)Tb_(0.1),Gd_5Si_2Ge_2, MnAs_(0.9)Sb_(0.1), and MnAs_(0.95)Sb_(0.05). We compared two different geometries of the regenerator: a porous medium and a flat plate. In the former, the Coefficient of Performance (COP) of the AMR cycle is better than that of the vapour compression plant only in the low mass flow-rate range. Whereas in a flat plate regenerator, the COP of the AMR cycle is better than that of the vapour compression plant only in the high mass flow-rate range.
机译:磁制冷是一种新兴的环保技术,其基于磁性固体,该磁性固体通过磁热效应充当制冷剂。磁制冷的参考循环是AMR(主动磁再生制冷)。在本文中,注意力集中在近室温范围内。我们将商业R134a制冷设备的能量性能与采用AMR循环的电磁冰箱的能量性能进行了比较。通过数学模型进行比较。在这些模拟中,我们考虑了不同的固体磁性制冷剂,即Gd,Gd_(0.95)Dy_(0.05),Gd_(0.9)Tb_(0.1),Gd_5Si_2Ge_2,MnAs_(0.9)Sb_(0.1)和MnAs_(0.95)Sb_ (0.05)。我们比较了再生器的两种不同的几何形状:多孔介质和平板。在前者中,仅在低质量流量范围内,AMR循环的性能系数(COP)优于蒸汽压缩设备。而在平板式蓄热器中,仅在高质量流量范围内,AMR循环的COP优于蒸汽压缩设备的COP。

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