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Transformation thermodynamics: Heat flux control and device applications

机译:变换热力学:热通量控制和设备应用

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Extended from its electromagnetic counterpart [1,2], transformation thermodynamics applied to thermal conduction equations can map a virtual geometry into a physical thermal medium, realizing the manipulation of heat flux with almost arbitrarily desired diffusion paths, which provides unprecedented opportunities to create thermal devices unconceivable or deemed impossible before [3,4]. In this talk we report our recent work on manipulation of transient heat flux employing this technique and showed two thermal devices: a heat flux cloak and an efficient plate heater. In the cloaking device we will show that heat flux can be guided by a transformed medium to flow around a vacuum obstacle and restore its diffusion direction as if nothing inhomogeneous exists in their trajectories [5]. In the second experiment we design an efficient plate heater that can transiently achieve a large surface of uniform temperature powered by a small thermal source [6]. As opposed to the traditional approach of relying on the deployment of a resistor network, our approach fully takes advantage of an advanced functional material system to guide the heat flux to achieve the desired temperature heating profile. Our research results are good examples of the powerful application of coordinate transformation on wave/flux manipulation and may help to broaden research in acquiring extraordinary ways to control and utilize heat energy or configure novel heat devices.
机译:从其电磁对应物[1,2]扩展而来,应用于热传导方程的变换热力学可以将虚拟几何图形映射到物理热介质中,从而以几乎任意期望的扩散路径实现对热通量的控制,这为创建热装置提供了前所未有的机会在[3,4]之前是不可想象的或被认为是不可能的。在本次演讲中,我们报告了我们最近使用该技术处理瞬态热通量的工作,并展示了两个热装置:热通量斗篷和高效的板式加热器。在隐身装置中,我们将显示热通量可以由转化的介质引导,在真空障碍物周围流动并恢复其扩散方向,就好像它们的轨迹中不存在任何不均匀的现象一样[5]。在第二个实验中,我们设计了一种高效的板式加热器,该板式加热器可以通过一个小的热源瞬时实现大面积的均匀温度表面[6]。与依靠电阻器网络部署的传统方法相反,我们的方法充分利用了先进的功能材料系统来引导热通量,以达到所需的温度加热曲线。我们的研究结果很好地说明了坐标变换在波浪/磁通操纵中的强大应用,并可能有助于扩大研究范围,以获取控制和利用热能或配置新型加热装置的非凡方式。

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