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光伏发电技术
★ 5.0
不同光伏/热电联用热电发电模块热电性能的比较:一项实验研究
Comparison of the thermoelectric performance of different photovoltaic/thermal hybrid thermoelectric generation modules: An experimental study
| 作者 | Tao Li · Junyong Yu · Xinyu Peng · Wenjie Zhou · Chenliang Xu · Guannan Li · Qianjun Mao |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 378 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A PV/2 T-PCM-TEG component was designed. |
语言:
中文摘要
为了提高光伏/热电联用热电发电模块(PV/T-TEG)的热电性能,设计了一种新型的光伏/双层热相变材料热电组件(PV/2 T-PCM-TEG),该组件由PV-PCM-TEG以及热电模块热端和冷端两侧的双层蛇形铜管构成。在本研究中,我们设计并搭建了包含五种组件的实验平台,分别为PV、PV/T、PV/T-PCM、PV/T-PCM-TEG和PV/2 T-PCM-TEG,并完成了其性能的对比分析。结果表明,PV/2 T-PCM-TEG不仅更有效地提升了光伏电池的发电性能,还获得了更多的热㶲,其总平均㶲效率和最优㶲效率分别达到14.86%和18.50%。与前四种模块相比,PV/2 T-PCM-TEG的光伏电池平均温度最高可分别降低10.8°C、8.6°C、3.6°C和2.1°C。PV/2 T-PCM-TEG具有最佳的发电性能,发电效率达12.97%,其平均总㶲效率分别比前四种模块高出55.11%、42.61%、11.39%和5.92%。由此可见,PV/2 T-PCM-TEG模块能够有效改善热电性能,为PV/T-TEG结构的设计提供了参考依据。
English Abstract
To enhance the thermoelectric performance of photovoltaic/thermal hybrid thermoelectric generations modules (PV/T-TEG), a novel photovoltaic/dual thermal phase change material thermoelectric component (PV/2 T-PCM-TEG) was designed, which is composed of PV-PCM-TEG and TEG hot and cold side of the two layers of serpentine copper tubes. In this study, we designed and constructed an experimental bench for five components, PV, PV/T, PV/T-PCM, PV/T-PCM-TEG, and PV/2 T-PCM-TEG, and completed comparative performance analyses. The results showed that PV/2 T-PCM-TEG not only improved the power generation performance of photovoltaic cells more effectively, but also obtained more thermal exergy, with total average and optimal exergy efficiencies of 14.86 % and 18.50 %, respectively. The average PV cell temperature of the PV/2 T-PCM-TEG can be reduced by a maximum of 10.8 °C, 8.6 °C, 3.6 °C, and 2.1 °C compared to the first four modules. The PV/2 T-PCM-TEG had the best power generation performance with 12.97 % efficiency, and its average total exergy efficiency is 55.11 %, 42.61 %, 11.39 %, and 5.92 % higher than that of the previous four types of modules, respectively. It can be seen that the PV/2 T-PCM-TEG module can effectively improve the thermoelectric properties and provide a reference basis for the design of PV/T-TEG structure.
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SunView 深度解读
该PV/2T-PCM-TEG混合发电技术对阳光电源光伏逆变器产品线具有重要参考价值。研究通过相变材料和热电模块将光伏组件温度最大降低10.8°C,发电效率提升至12.97%,这与SG系列逆变器的MPPT优化和温度管理策略高度契合。双层蛇形铜管热管理方案可启发iSolarCloud平台的温度监测算法优化,提升组件寿命预测精度。热能梯级利用思路也可应用于PowerTitan储能系统的热管理设计,通过回收PCS功率器件废热提升系统综合能效,特别适合高温地区的光储一体化项目部署。