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Analysis of geometrical and operational parameters of PCM in a fin and tube heat exchanger

机译:翅片管热交换器中PCM的几何和运行参数分析

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摘要

In this paper the process of solidification and melting of a phase change material is investigated in fin and tube heat exchanger. The shell side including around the tubes and spaces between fins is filled with the material R35 allocated to store energy of water, as heat transfer fluid, which flows inside the tubes. Experimental apparatus is used to investigate the effect of flow rate, inlet temperature and geometrical parameter (fin pitch) on charging and discharging processes of the phase change material. The shell side is a rectangular cube in which a continuous spiry tube creates a heat transfer surface. Results indicate that utilizing fins increases fin average temperature regardless of flow regime. While reduction in fin pitch doesn't affect this parameter sensibly for both regimes. By the increase of inlet temperature from T_h = 50 ℃ to T_h = 60 ℃, melting time decreases more severally in comparison with the same rise from T_h = 60 ℃ to T_h = 70 ℃.
机译:本文研究了翅片管式换热器中相变材料的凝固和熔化过程。包括管周围和翅片之间的空间在内的壳侧填充有材料R35,该材料被分配用于存储在管内流动的作为传热流体的水的能量。实验设备用于研究流速,入口温度和几何参数(翅片节距)对相变材料的充电和放电过程的影响。壳侧是一个矩形立方体,其中连续的螺旋管在其中形成了传热表面。结果表明,使用翅片会增加翅片平均温度,而与流态无关。虽然在两种情况下减小鳍间距都不会明显影响该参数。通过将进口温度从T_h = 50℃升高到T_h = 60℃,与从T_h = 60℃升高到T_h = 70℃的熔化时间相比,熔化时间会减少更多。

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