← 返回
基于流体域热阻分析的固液相变过程评价与调控
Evaluation and regulation of solid–liquid phase change process based on thermal resistance analysis in fluid domain
| 作者 | Ting Wang · Xiangxuan Li · Ting Ma · Qiuwang Wang |
| 期刊 | Energy Conversion and Management |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 344 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Thermal resistance network analysis reveals local and global heat transfer behavior. |
语言:
中文摘要
相变材料(PCMs)具有优异的热稳定性、循环性能和高储能密度,广泛应用于热能储存系统中。然而,传统储热单元结构简单,导致传热路径单一,储热效率较低,严重限制了能量的有效利用。由于相变过程中实验方法的局限性,当前的优化手段主要依赖于对温度场、流场、固液界面以及液相分数、熔化时间等全局参数的整体分析,缺乏对局部区域的详细分析与评估,难以揭示热性能提升背后的机理。本研究通过改变储热单元的边界条件和长宽比,采用热阻分析方法,系统地分析了局部与全局的流动及传热行为。研究发现,储热单元内部会出现明显的“树状”高热阻区域;当长宽比为16:4时,多个“树状”高热阻区域同时出现。据此,提出了在这些区域内设置“树状”翅片结构及相应的热阻评价因子。加入翅片后,平均评价因子F_x和F_y分别降低了68.11%和60.29%。与传统的直翅片相比,“树状”翅片结构使F_x和F_y进一步降低了23.96%和28.34%,并显著提高了总蓄热速率。本研究为高效储热系统的设计与优化提供了简洁而深刻的理论依据。
English Abstract
Abstract Phase change materials (PCMs) exhibit excellent thermal stability, cycling performance, and high energy storage density, and are widely applied in thermal energy storage systems. However, the simple structure of conventional storage units leads to a single heat flow path, resulting in low heat storage efficiency and severely restricting effective energy utilization. Due to limitations in experimental methods during the phase change process, current optimization approaches mainly rely on global analyses of temperature fields, flow fields, solid–liquid interfaces, and global parameters such as liquid fraction and melting time, while lacking detailed local analysis and evaluation, making it difficult to reveal the mechanisms behind thermal performance improvement. In this study, by altering the boundary conditions and aspect ratios of the storage unit, the local and global flow and heat transfer behaviors were analyzed based on the thermal resistance analysis methodology. It was found that distinct “tree-shaped” high thermal resistance zones appear inside heat storage units, and when the aspect ratio is 16:4, multiple “tree-shaped” zones emerge. Accordingly, a “tree-shaped” fin arrangement within these regions and the thermal resistance evaluation factors were proposed. With the addition of fins, the average evaluation factors F x and F y decreased by 68.11 % and 60.29 %, respectively. Compared to conventional straight fins, the “tree-shaped” fin structure further reduced F x and F y by 23.96 % and 28.34 %, respectively, and significantly improved the total stored heat rate. This study provides simple insights into the design and optimization of high-efficiency thermal storage systems.
S
SunView 深度解读
该相变储热技术对阳光电源PowerTitan储能系统的热管理优化具有重要参考价值。研究提出的'树状'热阻分析方法可应用于ST系列PCS及电池簇的散热结构设计,通过识别高热阻区域优化散热路径,相比传统直翅片可降低23.96%热阻。该方法可指导储能柜内部风道布局和液冷管路设计,提升功率器件散热效率,延长电池循环寿命。结合iSolarCloud平台的温度场监测数据,可实现储能系统热管理的预测性优化,提升系统安全性和能量转换效率。