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光伏发电技术 ★ 5.0

基于线性菲涅尔滤光-聚光结构的新型太阳能分频光伏-聚热混合转换系统:实验装置与应用分析

A novel solar spectrum splitting PV-CPT hybrid conversion system based on linear Fresnel filter-concentrator structure: Experimental device and application analysis

作者 Jialu Tian · Guijia Zhang · Haojin Wu · Shiquan Shan · Leyi Miao · Ziying Cheng · Zhijun Zhou · Kefa Cen
期刊 Applied Energy
出版日期 2025年10月
卷/期 第 396 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Propose a novel approach integrating macro linear Fresnel structure with micro filter.
语言:

中文摘要

摘要 本研究探讨了光伏-聚热(PV-CPT)太阳能高效转换技术,将多层选择性滤光膜集成至线性菲涅尔聚光结构中,实现全光谱分频与剩余光谱的聚焦利用。针对硅基光伏电池设计的光学滤光片在响应波段内具有高透射率,可将60.7%的太阳能量用于光伏发电。未被利用的剩余光谱则由线性菲涅尔选择性滤光场反射并聚焦至热能接收器。本文分析了三种典型的热能利用方式——有机朗肯循环(ORC)、甲醇分解(MD)以及与蒸汽朗肯循环(SRC)耦合——用于聚热转换(CPT),并通过㶲效率评估揭示不可逆损失的产生机制。基于ORC、MD及与SRC耦合的混合系统的发电效率分别为31.56%、31.73%和32.65%。其中,与SRC耦合的方法实现了21%的更高CPT㶲效率,并具有最高的混合系统总效率,因此是剩余光谱CPT转换的最优方案。本研究构建了实验装置并建立了系统的热物理模型以评估系统性能,在聚光比为9.8的条件下,接收管温度达到435 K。该研究为实现高效太阳能全光谱能量转换提供了重要的理论与实践参考。

English Abstract

Abstract This study investigates the solar energy efficient conversion of photovoltaic-concentrated photothermal (PV-CPT), integrating the multilayer selective filter into a Linear Fresnel concentrating structure for full-spectrum splitting and residual-spectrum concentration. The optical filter designed for Si PV cell achieves high transmittance in the respond waveband, transmitting 60.7 % solar energy for PV power generation . The residual spectrum is reflected and concentrated by the Linear-Fresnel selective filter field to the thermal receiver. Three typical thermal utilization methods, Organic Rankine Cycle (ORC), Methanol Decomposition (MD) and coupling with Steam Rankine Cycle (SRC) are analyzed for CPT conversion . The exergy efficiencies of these processes are evaluated to understand the mechanism of irreversible losses. The power generation efficiencies of hybrid systems based on ORC, MD, and coupling with SCR are 31.56 %, 31.73 % and 32.65 %, respectively. The coupling with SRC method achieves a higher CPT exergy efficiency of 21 % while having the highest hybrid system efficiency, making it the optimal for residual-spectrum CPT conversion. An experimental device and a thermo-physical model of the system are developed to evaluate system performance , with the receiver tube reaching 435 K at a concentration ratio of 9.8. This study provides valuable insights for the implementation of high-efficiency solar full-spectrum energy conversion.
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SunView 深度解读

该光伏-光热混合发电技术对阳光电源SG系列光伏逆变器产品具有重要启示。研究中硅基光伏组件响应波段透射率达60.7%,剩余光谱用于热发电,系统综合发电效率最高达32.65%。这为阳光电源多能互补系统设计提供新思路:可结合ST系列储能变流器与光热发电系统耦合,通过先进MPPT算法优化光谱分离后的光伏发电效率,同时利用iSolarCloud平台实现光伏-光热-储能协同控制,提升全光谱能量转换效率,拓展高效太阳能综合利用解决方案应用场景。