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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Active transient cooling by magnetocaloric materials
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Active transient cooling by magnetocaloric materials

机译:磁热材料的主动瞬态冷却

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摘要

The magnetocaloric effect (MCE) has been intensively studied for novel energy efficient thermal management systems. The present study demonstrates a proof-of-concept magnetic cooling setup for active cooling of the thermal spikes of a heated resistor. Using Gd as the MCE material, the device was capable of actively cooling thermal spikes within one cycle since the dynamics of magnetic phase transition in Gd (a second-order magnetic phase transition material) are favorable to effect a fast MCE response. Enhanced cooling rate of the heated resistor of up to ~85% for active cooling by MCE compared to passive cooling was achieved. The cooling curve of the resistor was found to follow an exponential decrease. Our results show that magnetic cooling systems can be an efficient solution to cool thermal spikes in active transient cooling systems.
机译:磁热效应(MCE)已针对新型节能热管理系统进行了深入研究。本研究演示了一种概念证明的磁冷却设置,用于主动冷却加热电阻的热尖峰。使用Gd作为MCE材料,该设备能够在一个周期内主动冷却热尖峰,因为Gd(二阶磁性相变材料)中磁性相变的动力学有利于实现快速的MCE响应。与被动冷却相比,通过MCE进行主动冷却的加热电阻器的冷却速率提高了约〜85%。发现电阻器的冷却曲线呈指数下降。我们的结果表明,磁性冷却系统可以有效地冷却主动瞬态冷却系统中的热尖峰。

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