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Experimental and numerical investigation on enhancing heat transfer performance of a phase change thermal storage tank

机译:增强相变热储罐传热性能的实验和数值研究

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摘要

There are extensive research and application prospects in the fields of solar energy utilization and waste heat recovery of low and medium temperature latent thermal energy storage (TES), but the low thermal conductivity of phase change material (PCM) seriously weakens the thermal response rate and the rate of heat storage and release of TES. In order to solve this problem, this paper adopts a multi-scale heat transfer enhancement technique. The following parameters by grouping experiments are investigated: expanded graphite (EG) particle content, the diameter and placement position of copper rods. Then the experimental results are analyzed by the statistical response surface method (RSM). At the same time, a 3D model of the phase change heat storage of a single tank is established considering the natural convection of liquid PCM. Meanwhile, the influence of the placement of copper fin on the charging process was analyzed numerically. RSM analysis and simulation results show that copper rod diameter and EG particle content are two important parameters affecting the melting of PCM. Meanwhile, it is predicted that in the range of D (Cu) = 4-6mm, if the EG particle content is 2 wt.%, it has a shorter melting time and higher economic performance. The placement of the copper rod has no obvious effect on the charging process, but the placement of the annular copper fin has an obvious effect on the melting process of PCM. This study will provide guidance for the heat transfer optimization design of a single tank TES.
机译:在太阳能利用和低温潜热能储存(TES)的太阳能利用和废热回收领域存在广泛的研究和应用前景,但相变材料(PCM)的低导热率严重削弱了热响应速率热量储存速度和TES的释放速度。为了解决这个问题,本文采用多尺度传热增强技术。研究了通过分组实验的以下参数:膨胀石墨(例如)颗粒含量,铜棒的直径和放置位置。然后通过统计响应表面法(RSM)分析实验结果。同时,考虑液体PCM的自然对流来建立单个罐的相变热存储的3D模型。同时,在数值上分析了铜鳍对充电过程的影响。 RSM分析和仿真结果表明,铜棒直径和颗粒含量是影响PCM熔化的两个重要参数。同时,预测,如果例如颗粒含量为2重量%,则在D(Cu)= 4-6mm的范围内。%,它具有更短的熔化时间和更高的经济性能。铜棒的放置对充电过程没有明显的影响,但环形铜翅片的放置对PCM的熔化过程具有明显的影响。本研究将为单个坦克TES的传热优化设计提供指导。

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