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采用相变浆体作为换热介质的太阳能辅助热泵性能研究
Performance study of solar assisted heat pump using phase change slurry as heat exchange medium
| 作者 | Sheng Li · Chong Xu · Jiacheng Chao · Xuejun Zhang · Jinshuang Gao · Changxing Zhang |
| 期刊 | Energy Conversion and Management |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 326 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能变流器PCS |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A novel solar phase-change slurry direct-evaporation PV/T heat pump system was proposed; |
语言:
中文摘要
摘要 在间接膨胀式光伏/热能(PV/T)热泵系统中,使用正十八烷相变浆体(n-PCS)作为蓄热、传热和放热介质,旨在同时提高太阳能转换效率和热泵循环性能。本文提出了一种太阳能n-PCS直接蒸发式PV/T热泵系统。在该系统中,n-PCS作为蓄热、传热和放热介质,将蒸发器与PV/T集热器连接起来。该PV/T热泵系统具有较高的发电能力,平均输出功率为189.85 W,同时保持了稳定的电力生产。在运行过程中,最大集热效率和发电效率分别达到86.82%和26.82%,平均效率分别为74.77%和15.53%。在热泵循环中,n-PCS释放潜热以维持较高的、稳定的蒸发温度,用于加热蒸发器,从而提高了循环效率和系统稳定性。实验期间,热泵的平均性能系数(COP)和瞬时COP分别达到4.67和6.34。混合COP的最大值和最小值分别为14.86和4.33,表明系统在整个运行过程中具有良好的稳定性。
English Abstract
Abstract The use of n-octadecane phase change slurry (n-PCS) as a heat storage, heat transfer, and heat release medium in indirect expansion photovoltaic/thermal (PV/T) heat pump system aims to simultaneously enhance solar energy conversion efficiency and heat pump cycle performance. A solar n-PCS direct evaporation PV/T heat pump system is proposed. In this system, n-PCS serves as a heat storage, heat transfer, and heat release medium, linking the evaporator with the PV/T collector. The PV/T heat pump system achieves a high-power generation capacity, with an average output of 189.85 W, while also maintaining stable electricity production. During operation, the maximum heat collection and power generation efficiencies reach 86.82 % and 26.82 %, respectively, with average efficiencies of 74.77 % and 15.53 %. In the heat pump cycle, n-PCS releases latent heat to maintain a high and steady evaporation temperature for evaporator heating, enhancing both the cycle efficiency and stability. During the experiment, the average and instantaneous heat pump coefficients of performance (COPs) reached 4.67 and 6.34, respectively. The maximum and minimum hybrid COP s were 14.86 and 4.33, respectively, demonstrating consistent system stability throughout operation.
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SunView 深度解读
该光伏热泵相变储能技术对阳光电源ST系列储能变流器(PCS)具有重要启示。研究中n-PCS相变浆料实现储热-传热-释热一体化,与我司PowerTitan储能系统的能量管理理念高度契合。系统COP达4.67且混合COP最高14.86,证明光储热多能互补的高效性。可借鉴其相变储能机制优化ST系列PCS的热管理设计,结合SG逆变器的MPPT技术提升光伏发电效率(研究达26.82%),并探索将该技术集成到iSolarCloud平台实现光储热协同控制,拓展工商业储能场景应用。