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质子交换膜燃料电池热-水-电耦合建模及其在不同工况下的动态性能分析
Thermal-water-electrical coupling modeling of PEMFC and its dynamic performance analysis under different operating conditions
| 作者 | Bin Liab · Zhangxi Wua · Ye Lic · Jiawei Hea · Bowen Wangb · Kui Jiaob · Xinhang Hua · Hui Fana · Jianzhong Wue |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 398 卷 |
| 技术分类 | 氢能与燃料电池 |
| 技术标签 | 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | An integrated model of PEMFC considering thermal-water-electrical coupling operating mechanism is constructed. |
语言:
中文摘要
摘要 将可再生能源与氢储能相结合用于发电是实现清洁能源转型的一种有前景的替代方案。然而,可再生能源的波动性和间歇性给质子交换膜燃料电池(PEMFC)系统的安全高效运行带来了重大挑战。由于PEMFC内部存在复杂的热-水-电场耦合机制,目前尚未对电力系统运行工况变化下PEMFC在多时间尺度上的动态性能进行定量分析。本文基于PEMFC内部的导热、传质及电化学反应过程,首先分析了热、水、电参量之间的参数耦合关系,建立了综合性的PEMFC模型。随后,研究了在不同时间尺度的电力系统运行工况变化下,PEMFC内部热、水、电参量的响应特性。在此基础上,分析了PEMFC内部多物理场参量变化对系统运行效率的影响。最后,评估了外部电压波动对PEMFC内部安全性的影响。仿真结果表明,时间尺度、设备运行状态以及电力系统运行工况的变化均会影响PEMFC系统的内部安全特性和运行效率。此外,电压稳定性控制对于PEMFC系统持续高负载运行至关重要。本研究为PEMFC的建模以及安全高效运行策略的制定提供了有价值的理论依据。
English Abstract
Abstract Renewable energy integrated with hydrogen storage for power generation is a promising alternative for achieving a cleaner energy source transition. However, the volatility and intermittency of renewable energy pose significant challenges to the safe and efficient operation of the proton exchange membrane fuel cells (PEMFC) system. Due to the complex thermal-water-electrical fields coupling mechanism, a quantitative analysis of the dynamic performance of PEMFC under changes in power system operating conditions at multiple time scales has not been analyzed. Based on the heat conduction , water transport, and electrochemical reaction processes within PEMFC, this paper first analyzes the parametric coupling relationship between the thermal-water-electrical quantities and builds a comprehensive PEMFC model. The response characteristics of the internal thermal-water-electrical quantities under variations in power system operating conditions on different time scales are then investigated. On this basis, the influence of the internal multi-field physical quantities variations of PEMFC on the system operating efficiency is analyzed. Finally, the impact of external voltage fluctuations on the safety inside the PEMFC is evaluated. The simulation results indicate that the time scales, equipment operating states, and the variations of power system operating conditions affect the internal safety characteristics and operating efficiency of the PEMFC system. Furthermore, voltage stability control is essential for sustained heavy-load operation of the PEMFC system. This research provides valuable insights into PEMFC modeling and developing safe and efficient operation strategies
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SunView 深度解读
该PEMFC热-水-电多物理场耦合建模技术对阳光电源氢储能系统集成具有重要参考价值。研究揭示的多时间尺度动态响应特性可指导ST系列PCS与PEMFC协同控制策略优化,特别是电压波动对燃料电池安全性的影响分析,可应用于PowerTitan储能系统的氢电耦合场景。多场耦合机制为开发氢能-储能-光伏一体化解决方案提供理论支撑,助力iSolarCloud平台实现PEMFC预测性维护与效率优化,推动可再生能源制氢储能系统的安全高效运行。