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Numerical study on performance enhancement of shell-and-tube latent heat storage unit

机译:壳管式潜热机组性能提升的数值研究

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摘要

A compound enhancement method was proposed to improve the latent heat storage (LHS) performance of a shell-and-tube LHS unit, which is consisted of internal enhanced tube (ET) and multiple phase change material (PCM). Numerical validations on the presented method were performed based on comparisons of four different LHS cases: case 1 (basic case); case 2 (simple enhancement case); case 3 and 4 (compound enhancement cases). The results show that the simple enhancement case can only enhance PCM melting rate at the first half of the LHS tube; the compound enhancement case can obtain the synergy enhancement effect for the whole LHS tube. Compared with case 2, the PCM melting time is reduced by 373% and 17.4%, the total charging time is reduced by 25.6% and 16.9% for case 3 and case 4 respectively. For case 3, although the PCM melting time and charging time are the shortest, the total thermal energy storage (TES) capacity is reduced by 26.9% due to the lower PCM melting enthalpy. For case 4, not only the melting time and charging time can be obviously reduced, but also the total TES capacity is augmented by 6.6%.
机译:提出了一种复合增强方法来提高管壳式LHS单元的潜热存储(LHS)性能,该单元由内部增强管(ET)和多相变材料(PCM)组成。基于四种不同的LHS案例的比较,对所提出的方法进行了数值验证:案例1(基本案例);案例1(基本案例);案例1(基本案例)。情况2(简单的增强情况);情况3和4(复合增强情况)。结果表明,简单的增强情况只能提高LHS管前半部分的PCM熔化速率。复合增强案例可以为整个LHS管获得协同增强效果。与情况2相比,PCM熔化时间减少了373%和17.4%,情况3和情况4的总充电时间分别减少了25.6%和16.9%。对于情况3,尽管PCM熔化时间和充电时间最短,但由于较低的PCM熔化焓,总热能存储(TES)容量减少了26.9%。对于情况4,不仅可以显着减少熔化时间和装料时间,而且总TES容量也增加了6.6%。

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