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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical and experimental study of the thermal rectification of a solid-liquid phase change thermal diode
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Numerical and experimental study of the thermal rectification of a solid-liquid phase change thermal diode

机译:固液相变热敏二极管热精馏的数值与实验研究

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摘要

Phase change materials (PCMs) are highly effective to enhance the sustainability of thermal energy storage, management and control systems. The quest to find other novel applications of PCMs diverts attention towards phase change thermal diodes. However particularly, solid-liquid phase change thermal diodes (SL-PCTDs) suffer from fairly low thermal rectification ratio, hampering their implementation as thermal management and temperature control units. Herein, a SL-PCTD prototype is reported that is capable to access thermal rectification ratio of 3.0, being the highest in the family of SL-PCTDs. With the help of a theoretical model, the design was optimized in terms of bi-terminal length, providing the guideline to physically fabricate and experimentally execute the SL-PCTD. Paraffin wax and calcium chloride hex-ahydrate have been employed to assemble phase change bi-terminals. In operation, the heat flux was manipulated within a wide temperature bias of 10-40 ℃, in both the forward and reverse directions. Also, theoretical model includes the natural convection and liquid-height-dependent effective thermal conductivity of calcium chloride hexahydrate, helping to meet the prerequisites of a high-performance design.
机译:相变材料(PCM)在增强热能存储,管理和控制系统的可持续性方面非常有效。寻找PCM的其他新颖应用的需求将注意力转移到相变热敏二极管上。然而,特别是,固液相变热敏二极管(SL-PCTD)的热整流率非常低,妨碍了其作为热管理和温度控制单元的实施。在此,报道了SL-PCTD原型,其能够获得3.0的热精馏率,这是SL-PCTD家族中最高的。在理论模型的帮助下,设计在双端子长度方面进行了优化,为物理制造和实验执行SL-PCTD提供了指导。石蜡和氯化钙六水合物已被用于组装相变双末端。在运行中,在正向和反向两个方向上,热通量都在10-40℃的宽温度偏差内进行控制。此外,理论模型还包括六水合氯化钙的自然对流和依赖于液体高度的有效热导率,有助于满足高性能设计的先决条件。

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