← 返回
光伏发电技术 ★ 5.0

一种采用曲面CIGS组件的新型CPV/T系统的性能分析

Performance analysis of a novel CPV/T system with curved CIGS modules: Comparison with traditional flat modules

作者 Hao Xi · Zhiying Song · Yayun Tang · Jie Ji
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 389 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A novel CPV/T system employing curved CIGS surface receiver is firstly proposed.
语言:

中文摘要

摘要 聚光光伏/热技术是一种高效且低成本的太阳能发电与高温热量提取方法。然而,高温、光照斑点不均匀以及温度分布不均是导致发电效率下降和电池损坏的核心问题,严重影响聚光光伏/热系统的可靠性。尽管已有研究通过高效冷却或优化聚光器来解决上述问题,但接收器通常仍采用表面平坦的晶体硅组件。本文首次提出一种采用曲面CIGS(CuInxGa1−xSe2)接收器的新型聚光光伏/热系统。经过粒子群优化后,局部聚光比的标准差从4.75降至3.00。在选定的测试日,光照均匀性提升了58.22%,最大温差从24.9°C降至14.79°C,表面温度标准差由5.61°C降低至2.71°C,表明温度均匀性提升了51.69%。由于遮挡面积更小,曲面接收器额外节约了0.3 MJ的太阳能,使最终水温达到87°C。尽管CIGS电池的参考效率(16%)低于晶体硅电池(17.8%),所提出的系统仍比传统系统多产生4.3%的电量,并比采用平面CIGS接收器的系统多产生6.8%的电量。在整个白天运行中,系统的综合效率达到68.92%。

English Abstract

Abstract Concentrating photovoltaic/thermal technology is a high-efficiency but low-cost approach for power generation and high-temperature heat extraction by utilizing solar energy. However, the high temperature, uneven light spot and temperature distribution are the core issues causing electrical efficiency degradation and cell damage, seriously affecting the reliability of the concentrating photovoltaic/thermal system. Although efforts have been made to address the problems by efficient cooling or concentrator improvement, the receivers are always crystalline silicon modules with flat surface . This is the first time to propose the novel concentrating photovoltaic/thermal system employing curved CIGS (CuIn x Ga 1−x Se 2 ) receiver. After particle swarm optimization , the standard deviation of local concentration ratio drops from 4.75 to 3.00. On the selected day, the illumination uniformity is optimized by 58.22 %, the maximum temperature difference drops from 24.9 °C to 14.79 °C, and the standard deviation of surface temperature is reduced from 5.61 °C to 2.71 °C, meaning the temperature uniformity is optimized by 51.69 %. With a smaller shading area, the curved receiver also saved 0.3 MJ solar energy, resulting in higher final water temperature at 87 °C. Although the reference efficiencies of CIGS at 16 % is lower than that of c-Si at 17.8 %, the proposed system still produces 4.3 % more electricity than traditional system and generates 6.8 % more electricity than the system with flat CIGS receiver. Over the whole day, the overall efficiency is 68.92 %.
S

SunView 深度解读

该CPV/T曲面CIGS接收器技术对阳光电源光伏逆变器产品线具有重要参考价值。研究通过粒子群优化算法将光照不均匀性优化58.22%,温度标准差降低51.69%,这与我司SG系列逆变器的MPPT优化技术高度契合。曲面接收器设计可启发我司开发适配非平面组件的智能追踪算法,提升复杂光照条件下的发电效率。68.92%的系统综合效率及高温热提取能力,为我司光储一体化解决方案在工业余热回收场景提供创新思路,可结合iSolarCloud平台实现温度场预测性维护,降低热斑风险。