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A Novel Indirect Visualization Method for Studying the Melting Heat Transfer of Nano-Enhanced Phase Change Materials Using Thermochromic Liquid Crystal Thermography

机译:用热致变色液晶热成像技术研究纳米增强相变材料熔化传热的新型间接可视化方法

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摘要

In order to give more sights into the melting (and solidification) heat transfer processes of nano-enhanced phase change material (NePCM) with invisible phase interfaces, a novel indirect method for tracking the phase interface by thermochromic liquid crystal (TLC) thermography is proposed. As an example case to demonstrate the applicability of the proposed method, the classical problem of melting heat transfer in a differentially heated rectangular cavity was revisited in the presence of NePCM of various loadings. A narrowband TLC was selected and calibrated carefully to build the hue-temperature relationship prior to being applied in the melting experiments. For validation purpose, the case of an unloaded NePCM, with a clear visible phase interface, was tested via combined direct and indirect observations. It was shown that this TLC method can easily and accurately capture the dynamic motions of the phase interface during melting. Based on the shape evolutions of the phase interface, it was concluded that for the NePCM sample with a higher loading (and hence a much greater viscosity), heat conduction becomes the dominant mode of heat transfer during melting as a result of the significantly deteriorated natural convection effect. This gives an intuitive confirmation of the hypothesis made in previous studies that were conducted using volume-average-based indirect methods.
机译:为了更深入地了解具有不可见相界面的纳米增强相变材料(NePCM)的熔融(和凝固)传热过程,提出了一种利用热致变色液晶(TLC)热成像技术跟踪相界面的新型间接方法。作为证明所提出方法的适用性的实例,在存在不同载荷的NePCM的情况下,重新讨论了在差热矩形腔中熔化传热的经典问题。选择窄带TLC并仔细校准,以建立色温关系,然后再应用于融化实验。为了验证目的,通过组合直接和间接观察测试了具有清晰可见相界面的未加载NePCM的情况。结果表明,这种薄层色谱法可以轻松,准确地捕获熔融过程中相界面的动态运动。根据相界面的形状演变,可以得出结论,对于负载较高(因此粘度更大)的NePCM样品,由于自然条件明显恶化,热传导成为熔化过程中的主要传热方式。对流效应。这直观地证实了以前的研究中使用基于体积平均的间接方法进行的假设。

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