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Numerical investigation of PCM solidification in a finned rectangular heat exchanger including natural convection

机译:自然对流翅片矩形热交换器中PCM凝固的数值研究

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The thermal energy storage got a significant role in the solar energy conservation to expand its use over time. To exploit solar energy continuously, we require a storage energy system. Phase Change Material (PCM) used in this kind of systems in order to store a great amount of thermal energy. This work concerns the solidification in the presence of the natural convection of a rectangular phase change material exposed to a cold airflow along the conducting sidewalls. With this intention, the first stage includes the presentation of a numerical model based on the conservation equations, treated by finite volume method. This numerical approach aims to follow the evolution of the various parameters characterizing the phenomenon of phase change (liquid-solid interface and solid fraction) during all the processes of solidification as well as the temperature and the velocity distribution in the PCM storage systems. Moreover, this study presents the transient evolution of the longitudinal air temperature profiles. It also presents the effect of fins number on heat transfer enhancement and the temporal evolution of the solidification front. The advantage of this study is to find a solution to extract the maximum of heat during the solidification of the PCM. This solution is to take into account the natural convection and also the addition of the fins. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着时间的流逝,热能存储在太阳能节约中发挥了重要作用。为了持续开发太阳能,我们需要一个储能系统。为了存储大量的热能,在此类系统中使用相变材料(PCM)。这项工作涉及矩形相变材料在自然对流中的固化,该矩形相变材料暴露于沿导电侧壁的冷气流中。出于这一目的,第一步包括基于守恒方程的有限体积法处理的数值模型的表示。这种数值方法旨在跟踪各种参数的演变,这些参数表征了在所有固化过程中相变现象(液固界面和固相分数)以及PCM存储系统中的温度和速度分布。此外,这项研究提出了纵向空气温度曲线的瞬态演变。它还提出了翅片数量对传热增强和凝固前沿时间演变的影响。这项研究的优势是找到一种在PCM固化过程中提取最大热量的解决方案。该解决方案要考虑自然对流以及鳍片的增加。 (C)2018 Elsevier Ltd.保留所有权利。

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