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Numerical study of tube arrangement and fin effects on improving the ice formation in ice-on-coil thermal storage systems

机译:盘管式冰蓄热系统中管布置和翅片改善结冰效果的数值研究

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摘要

Heat storage systems are used as a method for transferring and controlling the cold load in hot seasons. In this paper, to analyze the phase changes of an ice-on-coil thermal storage tank, the process of ice formation in a cavity with refrigerant carrier tubes is carried out using numerical simulation. Moreover, performance of some heat transfer enhancement methods including usage of fins around tubes with various dimensions and numbers and various tube number and arrangement, are compared. In this study, the inlet temperature is considered to be 275 K, which the temperature decrease up to 10 K due to freezing is observed. According to the results, the fin height is a very effective parameter in increasing the freezing rate. Also, upon increasing the tube number with smaller diameter, ice is formed with a higher speed due to their uniform distribution. So, with the tube number increasing from 9 to 16 in these systems at the same time interval, the fluid temperature drops from about 275 to 269 K, as well as the volume fraction of liquid decrease from about 0.4 to 0.22. Finally, by changing the tube arrangement from rectangular to triangular, faster rate of ice formation are observed.
机译:储热系统用作在炎热季节转移和控制冷负荷的方法。在本文中,为了分析盘绕式冰蓄热罐的相变,使用数值模拟进行了在带有制冷剂载管的腔体中结冰的过程。此外,比较了一些传热增强方法的性能,包括使用围绕各种尺寸和数量的管子以及各种管子的数量和布置的散热片。在这项研究中,入口温度被认为是275 K,观察到由于冻结温度降低到10K。根据结果​​,翅片高度是提高冷冻速度的非常有效的参数。另外,随着管直径的增加,由于冰的均匀分布,冰以较高的速度形成。因此,在这些系统中,在相同的时间间隔内,管数从9个增加到16个,流体温度从大约275 K下降到269 K,液体的体积分数从大约0.4下降到0.22。最后,通过将管子布置从矩形更改为三角形,可以观察到更快的结冰速度。

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