制冷
材料科学
热泵
制冷剂
蒸汽压缩制冷
核工程
主动冷却
空调
性能系数
热泵与制冷循环
工艺工程
热力学
水冷
机械工程
环境科学
热交换器
工程类
物理
作者
Jaka Tušek,Kurt Engelbrecht,Dan Eriksen,Stefano Dall’Olio,Jaka Tušek,Nini Pryds
出处
期刊:Nature Energy
[Springer Nature]
日期:2016-09-05
卷期号:1 (10)
被引量:318
标识
DOI:10.1038/nenergy.2016.134
摘要
A large fraction of global energy use is for refrigeration and air-conditioning, which could be decarbonized if efficient renewable energy technologies could be found. Vapour-compression technology remains the most widely used system to move heat up the temperature scale after more than 100 years; however, caloric-based technologies (those using the magnetocaloric, electrocaloric, barocaloric or elastocaloric effect) have recently shown a significant potential as alternatives to replace this technology due to high efficiency and the use of green solid-state refrigerants. Here, we report a regenerative elastocaloric heat pump that exhibits a temperature span of 15.3 K on the water side with a corresponding specific heating power up to 800 W kg−1 and maximum COP (coefficient-of-performance) values of up to 7. The efficiency and specific heating power of this device exceeds those of other devices based on caloric effects. These results open up the possibility of using the elastocaloric effect in various cooling and heat-pumping applications. Although heating and cooling consume a large fraction of global energy, current technologies are not energy efficient. Tušek et al. report an elastocaloric heat pump with active regeneration that can outperform other caloric-based cooling and heat-pumping devices.
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