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多管潜热蓄热器中加热管的优化布置

Optimum Placement of Heating Tubes in a Multi-Tube Latent Heat Thermal Energy Storage.

作者信息

Ghalambaz Mohammad, Mohammed Hayder I, Naghizadeh Ali, Islam Mohammad S, Younis Obai, Mahdi Jasim M, Chatroudi Ilia Shojaeinasab, Talebizadehsardari Pouyan

机构信息

Metamaterials for Mechanical, Biomechanical and Multiphysical Applications Research Group, Ton Duc Thang University, Ho Chi Minh City 758307, Vietnam.

Faculty of Applied Sciences, Ton Duc Thang University, Ho Chi Minh City 758307, Vietnam.

出版信息

Materials (Basel). 2021 Mar 5;14(5):1232. doi: 10.3390/ma14051232.

Abstract

Utilizing phase change materials in thermal energy storage systems is commonly considered as an alternative solution for the effective use of energy. This study presents numerical simulations of the charging process for a multitube latent heat thermal energy storage system. A thermal energy storage model, consisting of five tubes of heat transfer fluids, was investigated using Rubitherm phase change material (RT35) as the. The locations of the tubes were optimized by applying the Taguchi method. The thermal behavior of the unit was evaluated by considering the liquid fraction graphs, streamlines, and isotherm contours. The numerical model was first verified compared with existed experimental data from the literature. The outcomes revealed that based on the Taguchi method, the first row of the heat transfer fluid tubes should be located at the lowest possible area while the other tubes should be spread consistently in the enclosure. The charging rate changed by 76% when varying the locations of the tubes in the enclosure to the optimum point. The development of streamlines and free-convection flow circulation was found to impact the system design significantly. The Taguchi method could efficiently assign the optimum design of the system with few simulations. Accordingly, this approach gives the impression of the future design of energy storage systems.

摘要

在热能存储系统中使用相变材料通常被视为有效利用能源的一种替代解决方案。本研究给出了多管潜热热能存储系统充电过程的数值模拟。使用鲁比泰姆相变材料(RT35)对一个由五根管状传热流体组成的热能存储模型进行了研究。通过应用田口方法对管的位置进行了优化。通过考虑液相分数图、流线和等温线等高线来评估该装置的热行为。首先将数值模型与文献中已有的实验数据进行了验证。结果表明,基于田口方法,传热流体管的第一排应位于尽可能低的区域,而其他管应在外壳中均匀分布。当将管在外壳中的位置改变到最佳点时,充电速率变化了76%。发现流线和自由对流流动循环的发展对系统设计有显著影响。田口方法可以通过较少的模拟有效地确定系统的最佳设计。因此,这种方法为储能系统的未来设计提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6fb/7961982/2636dc6645b8/materials-14-01232-g001.jpg

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