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Methods for Determining the Thermal Transfer in Phase-Changing Materials (PCMs)

机译:测定相变材料(PCM)中热传递的方法

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摘要

A very important issue that needs to be solved as simply and correctly as possible is how to establish the thermal performance of phase-changing materials (PCM). The undertaken researches have analyzed the values of the thermal performances of the PCM taking into account the method of finite elements and the experimental research, respectively, based on a modern measurement system that was designed and implemented. Butyl stearate which has been encapsulated through complex coacervation in polymethyl methacrylate has been used as a PCM. Samples were made containing 10%, 20%, 30% and 40% PCM, respectively, within their structure. The research has established that at both the hot plate and the cold plate interface, the evolution of the temperature over time, established by both the finite element method (FEM) and experimental research, are quite close, and the best results have been obtained for the P30 sample. A very important thing observed during the finite element method (FEM) is that the simulated thermal flow variation extends between 2700-3110W/m being small enough not to influence the temperature measurement at the interface of hot or cold plates. Thus, the use of the FEM or the experimental research method can be applied with good results, provided that the correct initial conditions are used in the finite element method and that the experimental research is performed using the best possible apparatus.
机译:需要尽可能简单而正确地解决的一个非常重要的问题是如何建立相变材料(PCM)的热性能。基于已设计和实现的现代测量系统,所进行的研究分别考虑了有限元方法和实验研究,分析了PCM的热性能值。通过复合凝聚法封装在聚甲基丙烯酸甲酯中的硬脂酸丁酯已被用作PCM。制成的样品在其结构内分别包含10%,20%,30%和40%PCM。研究表明,在热板和冷板界面上,通过有限元法和实验研究确定的温度随时间的变化都非常接近,并且获得了最佳结果。 P30样本。在有限元方法(FEM)中观察到的一个非常重要的事情是,模拟的热流变化在2700-3110W / m之间扩展,该变化足够小,不会影响热板或冷板界面的温度测量。因此,如果在有限元方法中使用了正确的初始条件,并且使用了尽可能最佳的设备进行了实验研究,那么使用有限元法或实验研究方法就可以取得良好的效果。

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