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储能系统技术 储能系统 ★ 5.0

不同两相流关联式下高温热泵系统换热器设计与性能评估:4E分析

Heat exchanger design and performance evaluation for a high-temperature heat pump system under different two-phase correlations: 4E analysis

作者 Ding Wu · Bo Ma · Xiaohui Huang · Xian Wu · Yan Yang · Chuang Wen · Ji Zhang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 384 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 A comparative analysis among 8 two-phase heat transfer correlations was conducted.
语言:

中文摘要

摘要 为区域供热并促进可再生能源电力的消纳,高温热泵技术预计将在由可再生能源驱动的热能储存系统中发挥关键作用。然而,目前关于高温热泵性能预测的研究通常基于特定的换热器传热关联式,难以指导在高温热泵系统的换热器设计和系统性能评估中对两相流关联式的选择与组合。本研究聚焦于不同两相流关联式的影响,针对用于部件设计和系统性能预测的8种关联式(4种流动冷凝关联式和4种流动沸腾关联式)开展了对比研究。结果表明,对于设计工况下的冷凝器或蒸发器,其尺寸、成本及碳排放均显著受到不同两相流关联式的影响。在16组两相流关联式组合中,在设计热源温度80 °C时,系统性能波动较小;而在非设计工况热源温度85 °C、90 °C或95 °C时,系统的能量和㶲性能参数受到显著影响,相对差异较大(制热量最大相差9.88%,性能系数相差3.27%,㶲效率相差6.76%)。同时,系统的经济性和环境性能指标也在一定程度上受到影响,表现出明显的相对不确定性(供热成本相差1.91%,投资回收期相差4.44%,碳排放相差6.38%)。本研究有助于推动在更大规模的可再生能源驱动高温热泵应用中,针对板式换热器设计和系统评估合理选择与使用两相流关联式。

English Abstract

Abstract Supplying district heat and assisting the integration of renewable electricity, high-temperature heat pump technology is foreseen to play an essential role in renewable energy-powered thermal energy storage systems. However, existing studies on high-temperature heat pump performance prediction are usually based on utilizing specific heat transfer correlations of heat exchangers. It is difficult to guide the selection and combination of the two-phase correlations in the heat exchanger design and system performance assessment of the high-temperature heat pump. In the present study, we aim to focus on the impact of different two-phase correlations, and a comparative study is conducted among 8 correlations (4 flow condensation ones and 4 flow boiling ones) adopted for component design and system performance prediction. The results show that for designed condensers or evaporators, the dimensions, costs, and carbon emissions are significantly affected by different two-phase correlations. Among 16 pairs of two-phase correlations, little fluctuation of the system performance is observed at the design heat source temperature 80 °C. While at off-design heat source temperatures of 85, 90 or 95 °C, the energetic and exergetic performance parameters are significantly affected with high relative differences (9.88% of heating capacity, 3.27% of coefficient of performance, and 6.76% of exergy efficiency). Also, the system's economic and environmental performance indexes are influenced to some extent, with visible relative uncertainties (1.91% of the heating cost, 4.44% of the payback time, and 6.38% of the carbon emission). This research will help to promote the selection and utilization of two-phase correlations for the plate heat exchanger design and system assessment in larger renewable energy-powered high-temperature heat pump applications.
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SunView 深度解读

该高温热泵4E分析技术对阳光电源储能系统热管理具有重要参考价值。PowerTitan等大型储能系统面临显著热管理挑战,研究揭示的两相流换热关联式选择对换热器设计、成本及碳排放的影响,可直接应用于ST系列PCS和集装箱式ESS的冷却系统优化。特别是非设计工况下9.88%的制热量波动和6.76%的火用效率差异,启示我们在iSolarCloud平台集成精准热管理模型,实现储能系统全工况预测性维护,降低LCOE并提升系统可靠性。该方法论可延伸至充电站液冷系统设计。