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Eccentricity optimization of a horizontal shell-and-tube latent-heat thermal energy storage unit based on melting and melting-solidifying performance

机译:基于熔化和熔化-凝固性能的卧式壳管式潜热蓄热器的偏心率优化

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摘要

As for a horizontal single-pass shell-and-tube latent-heat thermal energy storage unit (LTESU), the eccentricity between inner and outer tube is designed to improve the melting and melting-solidifying performances. A fixed-grid numerical method with enthalpy-double-porosities model is proposed to accurately predict the melting or solidifying characteristics of LTESUs with different eccentricities. Some optimal eccentricities are obtained to decrease the total melting or melting-solidifying time. The effects of Rayleigh number on the optimal eccentricities are also discussed. The results show that, when melting process is just concerned, vertically moving down the inner tube from the center of outer tube can obviously decrease the total melting time. However, a greater eccentricity does not always bring a better melting performance. That is to say, there exists an optimal eccentricity for the shortest melting time. It is found that the optimal eccentricity for melting process is linearly dependent on the Rayleigh number. As for a complete heat storage process including charging and discharging process, the eccentric arrangement of inner tube has benefit for decreasing the total melting-solidifying time only when the Rayleigh number ratio of solidifying process to melting process is larger than 2.0. The optimal value of eccentricity for the melting-solidifying process increases sharply with the increase of Rayleigh number ratio when the value of Rayleigh number ratio varies from 2.0 to 3.0, but the growth of optimal eccentricity slows down when Rayleigh number ratio is greater than 3.0.
机译:对于卧式单程管壳式潜热储能器(LTESU),设计内外管之间的偏心度可提高熔融和熔融凝固性能。提出了一种具有双焓焓模型的固定网格数值方法,以准确预测不同偏心距的LTESU的熔化或凝固特性。获得一些最佳的偏心率以减少总熔融或熔融凝固时间。还讨论了瑞利数对最佳偏心率的影响。结果表明,仅考虑熔化过程,从外管中心垂直向下移动内管可以明显减少总熔化时间。然而,更大的偏心率并不总是带来更好的熔融性能。也就是说,存在最短熔化时间的最佳偏心率。发现熔融过程的最佳偏心率线性依赖于瑞利数。至于包括充放电过程在内的完整的储热过程,仅当凝固过程与熔化过程的瑞利数比大于2.0时,内管的偏心布置才有利于减少总熔化凝固时间。当瑞利数比的值从2.0变化到3.0时,熔融凝固过程的最佳偏心率随瑞利数比的增加而急剧增加,但是当瑞利数比大于3.0时,最佳偏心率的增长变慢。

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