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高性能多模式弹性制冷系统。

High-performance multimode elastocaloric cooling system.

机构信息

Department of Refrigeration and Cryogenic Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, People's Republic of China.

Center for Environmental Energy Engineering, Department of Mechanical Engineering, University of Maryland, College Park, MD 20742, USA.

出版信息

Science. 2023 May 19;380(6646):722-727. doi: 10.1126/science.adg7043. Epub 2023 May 18.

Abstract

Developing zero-global warming potential refrigerants has emerged as one area that helps address global climate change concerns. Various high-efficiency caloric cooling techniques meet this goal, but scaling them up to technologically meaningful performance remains challenging. We have developed an elastocaloric cooling system with a maximum cooling power of 260 watts and a maximum temperature span of 22.5 kelvin. These values are among the highest reported for any caloric cooling system. Its key feature is the compression of fatigue-resistant elastocaloric nitinol (NiTi) tubes configured in a versatile multimode heat exchange architecture, which allows the harnessing of both high delivered cooling power and large temperature spans. Our system shows that elastocaloric cooling, which only emerged 8 years ago, is a promising direction for commercializing caloric cooling.

摘要

开发零全球变暖潜能值制冷剂已成为解决全球气候变化问题的一个领域。各种高效热能冷却技术可满足这一目标,但将其扩展到具有技术意义的性能仍然具有挑战性。我们开发了一种最大制冷功率为 260 瓦、最大温度跨度为 22.5 开尔文的弹性能量冷却系统。这些值是任何热能量冷却系统中报告的最高值之一。其关键特点是疲劳强度高的弹性能量尼钛(NiTi)管的压缩,配置了多功能多模式热交换架构,从而可以利用高输出制冷功率和大温度跨度。我们的系统表明,仅在 8 年前出现的弹性能量冷却技术是热能冷却技术商业化的一个很有前途的方向。

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