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    中低温相变填充床储热系统研究进展

    Progress in investigation and application of middle and low-temperature phase change packed bed thermal storage system

    • 摘要: 中低温相变储热系统可有效存储太阳能、低品位工业余热等中低温热能,缓解能源供需不匹配的问题,助力可再生能源消纳及分布式综合能源全面发展。然而,相变填充床储热系统在利用中低温热能时,存在热能利用效率低的问题,这一瓶颈成为制约其整体性能提升的关键因素。首先介绍了相变填充床储热系统的结构组成、工作原理及其内部的传热机制,分析了系统在储/放热过程中的热传递特性。其次,重点讨论了其性能评估方法及主要影响因素,包括运行参数、材料参数、结构参数,并进一步剖析了这些参数对填充床储热系统热性能的影响规律;重点梳理了罐体结构及尺寸、填料结构及尺寸、分流器设计、填料填充方式等对填充床内流动与传热特性的影响,总结了结合多参数的系统性能提升策略,为填充床储热系统的优化设计和高效运行提供理论与实验依据。最后,概述了相变填充床储热系统在太阳能热利用、工业余热、电力调峰等中低温领域的应用,并展望了其未来发展前景与挑战。

       

      Abstract: The medium- and low-temperature phase change thermal storage systems can effectively store solar energy, low-grade industrial waste heat, and other thermal energy. They help alleviate the mismatch between energy supply and demand, promoting the integration of renewable energy and the comprehensive development of distributed energy systems. However, phase change packed bed thermal storage systems face the issue of low energy utilization efficiency when utilizing medium- and low-temperature heat sources, which has become a critical bottleneck limiting the improvement of their overall performance. This paper begins by introducing the structural composition, working principles, and internal heat transfer mechanisms of phase change packed bed thermal storage systems. It analyzes the heat transfer characteristics during the charging and discharging processes. Next, the performance evaluation methods and key influencing factors are discussed in detail, including operational parameters, material parameters, and structural parameters. The impact of these parameters on the thermal performance of packed bed thermal storage systems is further examined. Special attention is given to the effects of tank structure and size, filler structure and size, distributor design, and filling methods on the flow and heat transfer characteristics within the packed bed. Strategies for enhancing system performance through multi-parameter optimization are summarized, providing theoretical and experimental support for the optimized design and efficient operation of the packed bed thermal storage systems. Finally, the applications of phase change packed bed thermal storage systems in medium- and low-temperature fields, such as solar thermal utilization, industrial waste heat recovery, and power load leveling, are outlined. The future development prospects and challenges of this technology are also discussed.

       

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