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Performance investigation and sensitivity analysis of shell-and-tube phase change material thermal energy storage

机译:壳管相变材料热能储存的性能调查与敏感性分析

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This paper presents the development, experimental testing, and numerical investigation of water-based phase change material (PCM) thermal energy storage (TES) using the shell-and-tube design with different tube layouts including single serpentine, double serpentine, and spiral. Sodium acetate trihydrate (SAT) with a melting temperature of 58 degrees C was used as the storage medium. The major contribution of this study is the sensitivity analysis and performance comparison of the shell-and-tube PCM TES units with different tube layouts. A quasi-three-dimensional dynamic model of the PCM TES unit was developed and used to predict the performance of the TES unit under different design and operating conditions, which was validated against the experimental data. A global sensitivity analysis was implemented to quantify the influence of the design parameters on the performance of the PCM TES unit. The results showed that the inlet water temperature was the most influential parameter, followed by the tube length, water flow rate, tube layout, and PCM thermal conductivity. The PCM TES module with the spiral tube layout and the double serpentine tube layout generally outperformed that with the single serpentine tube layout. The time required to charge the PCM to a liquid fraction of 0.95 was reduced by 16.0% if changing the tube layout from single serpentine to spiral and when the tube length was 4,055 mm. The findings obtained from this study could be potentially used to guide and facilitate the design of the shell-and-tube PCM TES units.
机译:本文介绍了水性相变材料(PCM)热能储存(TES)的开发,实验检测和数值研究,使用具有不同管布局的壳管设计,包括单蛇纹石,双蛇纹石和螺旋形。使用熔融温度为58℃的醋酸钠三水合物(SAT)作为储存介质。本研究的主要贡献是具有不同管布局的壳管PCM TES单元的敏感性分析和性能比较。开发了一种PCM TES单元的准三维动态模型,并用于预测TES单元在不同的设计和操作条件下的性能,这对实验数据进行了验证。实施了全局敏感性分析,以量化设计参数对PCM TES单元性能的影响。结果表明,入口水温是最具影响力的参数,其次是管长度,水流速,管布局和PCM导热率。具有螺旋管布局的PCM TES模块和双蛇形管布局通常与单一蛇形管布局相反。如果将管布置从单蛇纹碱从单蛇纹碱改变为螺旋,则当管长度为4,055mm时,将PCM充电至0.95的液体分数所需的时间减少了16.0%。从该研究中获得的发现可能是可能用于引导和促进壳管PCM TES单元的设计。

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