圆柱换热器翅片几何形状对PCM熔化影响的数值研究

F. Spengler, B. Oliveira, Rejane De Césaro Oliveski, L. Rocha
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引用次数: 1

摘要

热蓄热是适应能源可用性和需求计划的一种有效方法。它可以以感热或潜热的方式储存,后者应用一种名为相变材料(PCM)的材料,该材料以有机化合物、水合盐、石蜡等形式提供。潜热蓄热系统有几个优点,如几乎等温的装卸过程和高能量密度。但由于导热系数低,使得循环时间延长,限制了其适用性。应用计算流体力学方法,研究了带水平翅片和垂直翅片的圆柱腔中PCM熔化过程的行为,以优化翅片的几何形状。通过这种方式,鳍的面积保持不变,改变其宽高比。数值模型由相变模型增加的连续方程、动量方程和能量方程组成,并与文献结果进行了验证。根据网格独立性、速度、净分数和温度在不同时刻的等高线,给出了定性和定量结果。研究结果表明,翅片在换热器内的位置对熔融过程有影响,垂直翅片的总熔融过程较快,水平翅片在换热器内可在较短的时间内达到较大的部分液体分数。如翅片的位置,其长度的增加有利于融化时间的减少,证明了最佳长径比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NUMERICAL STUDY OF THE GEOMETRIC INFLUENCE OF A FIN IN A CYLINDRICAL HEAT EXCHANGER FOR MELTING OF PCM
The thermal heat storage it’s an effective way to suit the energy availability with the demand schedule. It can be stored in the means of sensible or latent heat, the latter applying a material denominated Phase Change Material (PCM), which is provided as organic compounds, hydrated salts, paraffins, among others. The latent heat storage systems offer several advantages, like the practically isothermal process of loading and unloading and the high energy density. However, the low thermal conductivity makes the cycle prolonged on these systems, restricting its applicability. Applying computational fluid dynamics, the behavior of the PCM melting process was studied in cylindrical cavities with horizontal and vertical fins, aiming the optimization of the fin geometry. In this way the fin area was kept constant, varying its aspect ratio. The numerical model was validated with results from the literature and it’s composed of the continuity, momentum and energy equations increased by the phase change model. Qualitative and quantitative results are presented, referring to mesh independence, contours of velocity, net fraction and temperature at different moments of the process. The results of the study indicate that the position of the fin in the heat exchanger influences the melting process, although the vertical fins have a faster total melting process, horizontal fins can reach larger partial liquid fractions in less time in the heat exchanger. Such as the position of the fin, the increase of its length propitiates the reduction of the melting time, evidencing the optimal aspect ratio.
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