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储能系统技术
★ 5.0
空气源热泵辅助吸收式蓄热在低温环境下的放热研究
Air-source heat pump assisted absorption heat storage for discharging under low ambient temperature
| 作者 | Jinfang You · Jintong Gao · Renpeng Li · Ruzhu Wang · Zhenyuan Xu |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 380 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | An air-source heat pump assisted absorption heat storage system is proposed. |
语言:
中文摘要
摘要 吸收式蓄热能够实现高的储能密度(ESD)和效率。然而,在低温环境下,其性能受到结冰风险以及储能密度降低的显著制约。为缓解这些挑战,本研究提出了一种空气源蒸气压缩热泵辅助吸收式蓄热的耦合系统。在低温环境下放热时,空气源蒸气压缩热泵消耗少量电能,提升吸收式蓄热系统的蒸发温度,从而避免结冰风险并确保高效运行。本文对所提出的系统进行了理论与实验分析,以获得更深入的认识。理论分析表明,在空气源蒸气压缩热泵的辅助下,吸收式蓄热系统在寒冷环境条件下仍可提供65°C的高温热量输出。通过优化放热过程中的耦合温度,吸收式蓄热系统可实现320.5 kWh/m³的高储能密度,热泵则可达到4.18的高性能系数(COP)。此外,在-15°C的环境温度下,该耦合系统的电能性能系数(COP)不低于3.5。实验结果验证了该耦合系统在寒冷环境条件下可持续实现约200 kWh/m³的高储能密度,并输出65°C的热量。本研究通过融合蓄热与热泵技术,为拓展吸收式蓄热的应用提供了一种有前景的解决方案。
English Abstract
Abstract Absorption heat storage can realize high energy storage density (ESD) and efficiency. However, its performance is significantly constrained by the icing risk and reduced ESD under low ambient temperature. To mitigate these challenges, this study proposes a coupled system of air-source vapor compression heat pump assisted absorption heat storage. When discharging under low ambient temperature, the air-source vapor compression heat pump consumes small amount of electricity and lifts the evaporation temperature of absorption heat storage, thus avoiding the icing risk and ensuring efficient operation. Theoretical and experimental analyses for the proposed system were conducted for deeper insights. The theoretical analysis demonstrates that, with the assistance of air-source vapor compression heat pump, the absorption heat storage can provide high-temperature heat output of 65 °C under cold ambient condition. By optimized the coupled temperature during discharging, absorption heat storage and heat pump can work at high ESD of 320.5 kWh/m 3 and high coefficient of performance (COP) of 4.18, respectively. Besides, the electrical COP of the coupled system is no less than 3.5 under the ambient temperature of −15 °C. Experimental results validate that the coupled system can sustain a high ESD of approximately 200 kWh/m 3 , with an output temperature of 65 °C under cold ambient condition. This study offers a promising solution to expand the application of absorption heat storage by integrating the heat storage and heat pump technologies.
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SunView 深度解读
该空气源热泵辅助吸收式储热技术对阳光电源综合能源系统具有重要启示。其通过少量电能驱动热泵提升储热系统低温放热性能,实现COP>3.5和320kWh/m³能量密度,可与阳光电源ST系列储能变流器及PowerTitan系统协同,构建电-热混合储能方案。特别适用于北方寒冷地区的工商业储能项目,通过iSolarCloud平台智能调控电储能与热储能比例,在低温环境下保障供热需求同时提升系统经济性,为多能互补综合能源解决方案提供技术路径。