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- W4200161566 abstract "The thermal enhancement of phase change materials (PCMs) is a critical bottleneck for latent heat thermal storage technology. To overcome this problem, this work presents an innovative multi-tube latent heat storage (MTLHS) unit employing tree-shaped fins. A melting model for MTLHS units is established using an enthalpy-porosity scheme. The heat storage characteristics of innovative MTLHS units are numerically studied and compared to those of existing devices, focusing on the impact of melting convection. Moreover, the influence of the heat transport fluid (HTF) temperature and PCM type is also investigated. The results showed that tree-shaped fins are beneficial for thermal transport. Compared with finless and rectangular finned MTLHS units, the complete melting time of innovative MTLHS units is shortened by 80.2 and 34.4%, and their temperature uniformity is also improved. Melting convection includes the pre-induction, middle-development, and post-decay stages. Compared to finless MTLHS units, the convective excitation of the finned MTLHS units is slower and limited, while their influence range is significantly expanded. Increasing the HTF temperature effectively improves the heat storage efficiency, but the increased amplitude gradually decreases. In addition, PCM selection should comprehensively consider their heat storage rate and capacity to maximize the charging performance of MTLHS units in practical engineering." @default.
- W4200161566 created "2021-12-31" @default.
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- W4200161566 date "2022-02-01" @default.
- W4200161566 modified "2023-09-30" @default.
- W4200161566 title "Thermal performance analysis and enhancement of the multi-tube latent heat storage (MTLHS) unit" @default.
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- W4200161566 doi "https://doi.org/10.1016/j.est.2021.103812" @default.
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