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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical analysis of latent heat thermal energy storage using miniature heat pipes: A potential thermal enhancement for CSP plant development
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Numerical analysis of latent heat thermal energy storage using miniature heat pipes: A potential thermal enhancement for CSP plant development

机译:微型热管潜热热能存储的数值分析:CSP装置开发的潜在热能提升

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This paper presents a study, numerically and experimentally, on a new thermal enhancement method for improving the heat transfer performance of latent heat energy storage (LHTES) using miniature heat pipes (MHPs). As commonly known, heat pipes are passive heat transfer devices which are capable in transferring large amount of heat with a small temperature drop. The heat pipe used in this study is copper-water charged MHP and has physical dimensions of 2 mm diameter and 100 mm long. The phase change material (PCM) used in the LHTES is paraffin wax (RT60) which is an organic based PCM and has a melting point of 60 degrees C. The attractive thermal features of using PCM as thermal mass are high heat capacity, exhibit constant temperature during phase change and poor thermal response. However, the poor thermal conductivity (similar to 0.2 W/m.K) of the PCM has greatly limited its potential to be used as high heat storing materials for future thermal storage developments. One of the potential developments is the concentrated solar power (CSP) plant, where LHTES can play an important role for improving the power generating efficiency. Providing simple and yet effective thermal enhancement method is favourable for LHTES to be widely applicable. In this study, MHPs are randomly mixed in the PCM to provide better heat spreading and improve the effective thermal conductivity of the LHTES. The numerical method adopted is three-dimensional heat conduction and the numerical results are validated against experimental data. The results have shown that the effective thermal conductivity of MHP-PCM composition has improved exponentially with the increasing number of MHPs used. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过数值和实验的方法,对使用微型热管(MHP)改善潜热储能(LHTES)的传热性能的新型热增强方法进行了研究。众所周知,热管是无源传热装置,其能够以较小的温度降传递大量的热。本研究中使用的热管是铜水充填的MHP,物理尺寸为直径2毫米,长度100毫米。 LHTES中使用的相变材料(PCM)是石蜡(RT60),这是一种有机基PCM,熔点为60摄氏度。使用PCM作为热质的吸引人的热特征是高热容量,表现出恒定的相变过程中温度过高,热响应不良。但是,PCM导热性差(约0.2 W / m.K)极大地限制了其用作未来蓄热技术发展的高蓄热材料的潜力。潜在的发展之一是集中式太阳能发电(CSP)厂,LHTES可以在该厂中提高发电效率。提供简单而有效的热增强方法有利于LHTES的广泛应用。在这项研究中,MHP在PCM中随机混合,以提供更好的散热并提高LHTES的有效导热率。所采用的数值方法是三维热传导,并根据实验数据验证了数值结果。结果表明,随着所使用的MHP数量的增加,MHP-PCM组合物的有效导热系数得到了指数级的提高。 (C)2016 Elsevier Ltd.保留所有权利。

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