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MELTING PROCESS EXPEDITION OF PHASE CHANGE MATERIALS VIA SILICONE OIL

机译:相变材料通过硅油的熔融过程预测

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This paper presents a novel method of heat transfer enhancement and melting process expedition of phase change materials (PCMs) via silicone oil for the application in thermal energy storage systems. Sudden spot heating/cooling of the PCMs causes a non-uniform melting process and in some cases the volume expansion/contraction. To avoid this malfunction, silicone oil can be applied in these systems to increase convective heat transfer (stirring effect). The feasibility of this method is investigated by two experimental analysis, one by having the mixture in a cylindrical container and one in a cubic container. The results from the images taken by Charge-Coupled Device (CCD) camera in the first analysis show a uniform melting process of the PCM. In the second analysis, the comparison is made for the two parallel setups with and without the silicone oil with the same operating conditions. The results show that in the system that lacks silicone oil, the paraffin starts melting after around 11 minutes from the heater start-up, while this time is around 6 minutes in the system with silicone oil. The effectiveness of silicone oil in enhancing the heat transfer rate is shown by a temperature rise of around 10 °C in the container. Applying PCMs in conjunction with silicone oil in various thermal storage systems for heating/cooling applications specifically in solar thermal collectors, enables heat transfer enhancement and consequently heat storage directly on the system.
机译:本文提出了一种通过硅油进行相变材料(PCM)的传热增强和熔融过程加速的新方法,用于热能存储系统。 PCM的突然点加热/冷却会导致熔化过程不均匀,并且在某些情况下会导致体积膨胀/收缩。为了避免这种故障,可以在这些系统中使用硅油以增加对流传热(搅拌效果)。该方法的可行性通过两次实验分析进行了研究,一种是将混合物放入圆柱形容器中,另一种是将立方容器中的混合物。电荷耦合器件(CCD)相机在第一次分析中拍摄的图像结果表明PCM的熔化过程均匀。在第二个分析中,比较了在有和没有硅油的情况下在相同的工作条件下的两个并行设置。结果表明,在缺少硅油的系统中,石蜡在加热器启动后约11分钟后开始熔化,而在使用硅油的系统中,该时间约为6分钟。容器中温度升高约10°C,可以证明硅油在提高传热速率方面的有效性。在各种热存储系统中将PCM与硅油结合使用,特别是在太阳能集热器中进行加热/冷却应用,可以增强热传递,从而直接在系统上进行热存储。

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