Research on Optimization Model of Heat Exchange Fin Structure in Energy Storage System

Xiangdong Wang, Yulong Guo, Hao Ren, Ting Li, Zhenxia Zhao
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Abstract

Aiming at the thermodynamic problem of heat transfer fin in heat storage system, the solidification and melting model and thermodynamic conventional model are established by using simulation software, thermodynamic image processing and other methods. MATLABAB, COMSOL and other software are used to program the optimal rectangular fin spacing Angle and the optimal heat exchange fin structure. Firstly, based on the reason that the simulation software can simulate the heat transfer process of phase change material (PCM) in the actual process to the greatest extent, the plane modeling and thermodynamic equation method are used to analyze the distance Angle of the rectangular fin, and the melting solidification model is established, and the optimal solution is obtained. Finally, combined with the analytic hierarchy model and TOPSIS method, the triangular fin structure and rectangular fin structure were compared from three levels, namely, the heat sink area, temperature rise time and PCM maintenance time of different shapes. And create a heat transfer rate of return to more favorably analyze the data and visually present the comparative results.
储能系统换热翅片结构优化模型研究
针对蓄热系统中传热翅片的热力学问题,利用仿真软件、热力学图像处理等方法,建立了固溶模型和热力学常规模型。利用matlab、COMSOL等软件对最佳矩形翅片间距角和最佳换热翅片结构进行编程。首先,基于仿真软件能够最大程度模拟相变材料(PCM)在实际过程中的传热过程的原因,采用平面建模和热力学方程法对矩形翅片的距离角进行分析,建立了熔融凝固模型,并得到了最优解。最后,结合层次分析模型和TOPSIS方法,从不同形状的散热面积、温升时间和PCM维护时间三个层面对三角形翅片结构和矩形翅片结构进行比较。并创建一个传热回报率,以便更有利地分析数据并直观地呈现比较结果。
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