Energy Storage Science and Technology ›› 2024, Vol. 13 ›› Issue (2): 405-415.doi: 10.19799/j.cnki.2095-4239.2023.0627

• Energy Storage Materials and Devices • Previous Articles     Next Articles

Experimental study on heat storage performance of a double-fin rectangular phase change energy storage unit

Yibin LUO1(), Wenchao DUAN1, Jinghao YAN1, Jie LI1(), Xiaoqin SUN1(), Shuguang LIAO2   

  1. 1.School of Energy and Power Engineering, Changsha University of Science & Technology, Changsha 410114, Hunan, China
    2.Changsha Maxxom Technology Co. , Ltd, Changsha 410000, Hunan, China
  • Received:2023-09-13 Revised:2023-09-29 Online:2024-02-28 Published:2024-03-01
  • Contact: Jie LI, Xiaoqin SUN E-mail:yibinluo1206@163.com;lijie@csust.edu.cn;xiaoqinsun@csust.edu.com

Abstract:

This study aims to investigate the influence of different boundary temperatures on the heat storage performance of the phase change energy storage unit (PCESU) by conducting visual experiments on the melting process of phase change material (PCM) in a double-fin rectangular PCESU at different boundary temperatures. The analysis involves examining the melting behavior and heat transfer process based on the observation of the solid–liquid interface, PCM temperature, and liquid fraction. The results show that during the late melting stage, solid PCM accumulated at the right-bottom of the PCESU, extending the heat storage time, with the melting time ratio of the PCM at this stage exceeding 30%. With the increase of boundary temperature, the shape of the solid-liquid interface remains considerably constant, with temperature distribution variation being similar. However, the evolution process of the solid-liquid interface accelerates, and natural convection is enhanced, leading to a 60% increase in the nonuniformity of the temperature distribution in the PCM. Moreover, the phase transition temperature increases by a maximum of 2.9 ℃. The results demonstrate that when the boundary temperature increases from 50 ℃ to 73 ℃, the complete melting time is shortened by 510 min. Lower the boundary temperature, greater the FoSte, indicating that increasing the boundary temperature has a pronounced effect on heat transfer enhancement of the PCM at a lower boundary temperature.

Key words: double-fin, rectangular phase change energy storage unit, boundary temperature, melting process, natural convection

CLC Number: