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用于高效经济生产的多管潜热存储系统中的凝固强化:管的数量、位置和温度的影响

Solidification Enhancement in a Multi-Tube Latent Heat Storage System for Efficient and Economical Production: Effect of Number, Position and Temperature of the Tubes.

作者信息

Li Min, Mahdi Jasim M, Mohammed Hayder I, Bokov Dmitry Olegovich, Mahmoud Mustafa Z, Naghizadeh Ali, Talebizadehsardari Pouyan, Yaïci Wahiba

机构信息

Digital Economy Academy, Yango University, Fuzhou 350015, China.

Department of Energy Engineering, University of Baghdad, Baghdad 10071, Iraq.

出版信息

Nanomaterials (Basel). 2021 Nov 26;11(12):3211. doi: 10.3390/nano11123211.

Abstract

Thermal energy storage is an important component in energy units to decrease the gap between energy supply and demand. Free convection and the locations of the tubes carrying the heat-transfer fluid (HTF) have a significant influence on both the energy discharging potential and the buoyancy effect during the solidification mode. In the present study, the impact of the tube position was examined during the discharging process. Liquid-fraction evolution and energy removal rate with thermo-fluid contour profiles were used to examine the performance of the unit. Heat exchanger tubes are proposed with different numbers and positions in the unit for various cases including uniform and non-uniform tubes distribution. The results show that moving the HTF tubes to medium positions along the vertical direction is relatively better for enhancing the solidification of PCM with multiple HTF tubes. Repositioning of the HTF tubes on the left side of the unit can slightly improve the heat removal rate by about 0.2 in the case of p5-u-1 and decreases by 1.6% in the case of p5-u-2. It was found also that increasing the distance between the tubes in the vertical direction has a detrimental effect on the PCM solidification mode. Replacing the HTF tubes on the left side of the unit negatively reduces the heat removal rate by about 1.2 and 4.4%, respectively. Further, decreasing the HTF temperature from 15 °C to 10 and 5 °C can increase the heat removal rate by around 7 and 16%, respectively. This paper indicates that the specific concern to the HTF tube arrangement should be made to improve the discharging process attending free convection impact in phase change heat storage.

摘要

热能存储是能源单元中的一个重要组成部分,用于缩小能源供需差距。自由对流以及载有传热流体(HTF)的管道位置,对凝固模式下的能量释放潜力和浮力效应均有显著影响。在本研究中,考察了管道位置在能量释放过程中的影响。利用液体分数演化以及带有热流体轮廓的能量去除率来考察该单元的性能。针对包括均匀和非均匀管道分布在内的各种情况,在单元中提出了不同数量和位置的换热器管道。结果表明,对于多个HTF管道的情况,将HTF管道沿垂直方向移动到中间位置,对增强PCM的凝固效果相对较好。在p5-u-1的情况下,将HTF管道重新布置在单元左侧可使热去除率略有提高约0.2,而在p5-u-2的情况下则降低1.6%。还发现,在垂直方向上增加管道之间的距离对PCM凝固模式有不利影响。将单元左侧的HTF管道进行更换分别使热去除率负面降低约1.2和4.4%。此外,将HTF温度从15℃降至10℃和5℃可分别使热去除率提高约7%和16%。本文表明,应特别关注HTF管道布置,以改善相变蓄热中受自由对流影响的能量释放过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0454/8704335/f06d2780f487/nanomaterials-11-03211-g004.jpg

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