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变换热学:热超构材料及其应用 被引量:5

Transformation thermotics: thermal metamaterials and their applications
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摘要 热输运是自然界中最普遍的现象之一,如何高效操控热流在工业等领域有着巨大的应用价值.尽管主导热传导过程的扩散方程与波动方程迥异,但是,自2008年和2012年起,已有研究人员成功地将变换理论推广到宏观热传导领域.自此之后,多种具有特异性质的新型热材料在变换热学的理论框架下被设计出来,并同时获得实验验证.本文介绍该领域的研究进展,并同时介绍在热超构材料实验中软物质材料所起的关键作用. Heat transportation is one of the most ubiquitous phenomenon in the mother nature. Manipulating heat flow at will is of tremendous value in industry, civil life and even military. It would be a common sense that in different materials thermal properties are different. According to this knowledge people may design thermal materials to control heat conduction. One of the most common and successful example is blanket, which has been invented for thousands of years to keep us warm in cold days and keep icecream cool in summer. However, those great inventions are not powerful enough to manipulate heat flow at will. So there are still a lot of demands for designing the so-called metamaterials which have special properties that should not exist in nature.In 2006, Leonhardt and Pendry's research group(Pendry, Schurig and Smith) independently proposed a type of optical metamaterial which is also called invisible cloak. This device is well known for bending light around an object to make it invisible. Such a significant progress soon enlightened a lot of scientists in different aspects since it offers a powerful approach to design metamaterials. The principle of invisible cloak, which is concluded as transformation optics has been applied to light waves, acoustic, seismic, elastic waves, hydrodynamics and even matter waves as they all satisfy with wave equation.Although the conduction equation which governs the process of heat conduction is totally different from wave equation, from 2008 to 2012, Fan's group and Guenneau's group established the theoretical system of transformation thermotics. Since then, many thermal metamaterials with novel thermal properties have been figured out. Therefore, a boom in transformation thermotics and thermal metamaterials has begun.In this article, we will introduce some most recent achievements in this field, including novel thermal devices,simplified experimental method, macro thermal diode based on temperature dependent transformation thermotics, and the important role that soft matters play in the experimental confirmations of thermal metamaterials.These works pave the developments in transformation mapping theory and can surely inspire more designs of thermal metamaterials. What is more, some approaches proposed in this article provide more flexibility in controlling heat flow,and it may also be useful in other fields that are sensitive to temperature gradient, such as the Seebeck effect and many other domains where transformation theory is valid.
机构地区 复旦大学物理系
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2016年第17期99-125,共27页 Acta Physica Sinica
基金 国家自然科学基金(批准号:11222544) 上海市科学技术委员会(批准号:16ZR1445100)资助的课题~~
关键词 变换热学 热超构材料 软物质材料 transformation thermotics thermal metamaterial soft matter
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参考文献69

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