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1. 华南理工大学机械与汽车工程学院
2. 广东海洋大学海洋工程与能源学院
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许戈耀, 张尧康, 余浩贤, 等. 磁热泵循环与磁制冷循环的比较及展望[J/OL]. 制冷学报, 2025.
Comparison and Prospect of Magnetic Heat Pump Cycle and Magnetic Refrigeration Cycle. [J/OL]. Journal of refrigeration, 2025.
室温磁热泵作为磁热效应在室温附近的主要应用方向之一,具有高效、环保、低噪音、低振动的特点,本文首先通过磁热泵与磁制冷理论循环对比,验证复叠磁热泵循环在大温跨室温磁热泵上的应用潜力。研究结果表明:实际制热场景对千瓦级制热量和30K左右大温跨的双重要求是阻碍室温磁热泵应用的障碍,基于设计应用过程中室温磁热泵与现有室温磁制冷样机的区别,分析了针对大温跨室温磁热泵的磁热材料选择策略与性能评价指标,以帮助研究者明确在已有室温磁制冷的研究基础上,设计应用大温跨室温磁热泵的关键所在,促进对室温磁热泵循环的理解和应用研发。
As one of the main application directions of magnetocaloric effect near room temperature
room temperature magnetic heat pump has the characteristics of high efficiency
environmental protection
low noise and low vibration. In this paper
the application potential of cascade magnetic heat pump cycle in room temperature magnetic heat pump with large temperature spans was verified by comparing the theoretical cycle of magnetic heat pump and magnetic refrigeration. The results show that the dual requirements of kilowatt-level heating capacity and large temperature span of about 30K in the actual heating scenario are obstacles to the application of room temperature magnetic heat pump. Based on the difference between the room temperature magnetic heat pump and the existing room temperature magnetic refrigeration prototype in the design and application process
the magnetocaloric material selection strategy and performance evaluation index for the large temperature span room temperature magnetic heat pump were analyzed. The comparative analysis of magnetic heat pump and magnetic refrigeration in this paper also help researchers to clarify the key to the design and application of large temperature-span magnetic heat pump based on the existing research of room temperature magnetic refrigeration
and promote the comprehension and application of room temperature magnetic heat pump cycles
磁热效应磁制冷磁热泵复叠循环磁热材料
magnetocaloric effectMagnetic refrigerationMagnetic heat pumpCascade cycleMagnetocaloric material
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