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光伏发电技术 储能系统 ★ 5.0

评估光伏与太阳能热比例对组合式太阳能系统性能、成本和排放的影响

Assessing the effects of photovoltaic and solar thermal ratios on performance, cost, and emissions in combined solar configurations

作者 Arash Kazemian · Hongxing Yang · Changying Xiang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 384 卷
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Enhanced PVT-STE surpasses traditional models in efficiency.
语言:

中文摘要

摘要 本研究提出了一种集成太阳能热增强装置的光伏光热系统(Photovoltaic Thermal with Solar Thermal Enhancer, PVT-STE),旨在提升传统光伏光热(PVT)系统的性能。通过引入太阳能热增强器,PVT-STE系统采用独特的顺序传热机制,显著提高了热效率和电效率。该系统结构设计使传热流体首先流经PVT模块,随后进入增强型太阳能热(ST)模块,从而获得更高的流体温度,适用于从住宅到工业的多种应用场景。系统配置涵盖从完全太阳能热模式到全光伏光热模式之间的多种组合形式,包括混合配置,从而可在不同工况下进行详细的性能评估。利用先进的ANSYS软件,本研究以上海地区的季节性气象变化为基础,对系统性能进行了严格的仿真分析,重点关注电气输出与热输出、系统成本、表面温度分布、平准化度电成本(LCOE)、投资回收期以及碳减排潜力等指标。研究关键发现表明,热效率与电效率之间存在权衡关系:增加光伏组件比例通常会导致热输出下降。经济性评估结果显示,以太阳能热组件为主的系统可实现最低的LCOE,为0.016美元/千瓦时,并具有最短的投资回收期以及显著的碳减排效果。此类系统最短回收期可达1.35年,并产生可观的年度节能收益。相反,光伏组件占比较高的系统虽然回收期较长且环境效益相对较低,但能够产生大量的电能。这种灵活性突显了PVT-STE系统在不同运行环境下根据特定电力或热力需求提供定制化能源解决方案的能力,实现最优能量输出配置。

English Abstract

Abstract This study introduces a Photovoltaic Thermal with Solar Thermal Enhancer (PVT-STE) system, designed to outperform traditional Photovoltaic Thermal (PVT) systems. By integrating a solar thermal enhancer, the PVT-STE system improves both thermal and electrical efficiencies through a unique sequential heat transfer mechanism. The system architecture has the heat transfer fluid first passing through the PVT module, then into an enhanced solar thermal (ST) module, achieving higher fluid temperatures suitable for a range of applications, from residential to industrial. The system configurations range from fully solar thermal to entirely photovoltaic-thermal, including mixed setups, allowing for detailed performance evaluation across various scenarios. Using advanced ANSYS software, the system's performance was rigorously simulated under Shanghai's seasonal variations, focusing on metrics like electrical and thermal outputs, system cost, surface temperature distribution , Levelized Cost of Energy (LCOE), payback periods , and carbon emission reduction potentials. A key finding shows a trade-off between thermal and electrical efficiencies: more photovoltaic elements typically decrease thermal output. Economic evaluations show that systems with a strong solar thermal component achieve the lowest LCOE, at $0.016/kWh, and offer the shortest payback periods and substantial carbon emission reductions. These systems can reach payback periods as short as 1.35 years and generate significant annual savings. Conversely, systems with more photovoltaic components , while having longer payback periods and lesser environmental benefits, can produce considerable electricity. This adaptability emphasizes the PVT-STE system's capability to provide customized energy solutions, optimizing based on specific needs for electrical or thermal output in various operational contexts.
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SunView 深度解读

该PVT-STE光热光伏耦合系统研究对阳光电源具有重要启示。系统通过热流体串联传热机制实现光伏与热能协同优化,与我司SG系列逆变器的MPPT技术和ST系列储能变流器可形成互补方案。研究揭示的光伏-热能配比权衡特性,可指导我司开发智能能量管理算法,通过iSolarCloud平台实时优化电热输出比例。特别是其最低0.016美元/kWh的LCOE和1.35年回收期,验证了光热协同系统的经济性,为我司拓展工商业综合能源解决方案提供技术路径,可结合PowerTitan储能系统打造冷热电三联供产品线。