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提升建筑能效:集成半透明光伏与选择性液体滤光器的多功能玻璃窗
Enhancing building efficiency: Multifunctional glazing windows with integrated semitransparent PV and selective liquid-filters
| 作者 | Mostafa M.Abdelsamieab2 · Kabbir Alia · Mohamed I.Hassan Alia2 |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 377 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 | MFW improves thermal efficiency minimizes U-factor variation and boosts indoor comfort. |
语言:
中文摘要
建筑一体化光伏(BIPV)采光系统目前被认为是一种具有多种功能的有前景的技术。然而,该技术实现广泛应用的主要障碍在于如何在提高其光电转换效率(PCE)的同时,保持室内热舒适性和可见光透射率(VT)之间的平衡。本研究致力于开发一种多功能窗(MFW),通过在单层玻璃结构中将半透明光伏(STPV)电池与选择性液体滤光器(SLF)相结合,以优化太阳光谱的利用并提升BIPV窗户的热效率。采用结合方差分析(ANOVA)的三维数值模型,将MFW的能量产出、建筑能耗性能以及室内照明能力与现有玻璃窗进行了比较研究。结果表明,引入SLF可提高整体发电量,降低空调能耗,稳定热工性能,并提升室内舒适度。此外,研究强调了MFW在节能方面的重要潜力,突出了维持能源生产与室内环境舒适性之间和谐平衡的重要性。鉴于冬季凸显了能源效益与室内舒适性之间的关键关系,本文进一步考察了五种不同类型的MFW设计方案。在严苛的冬季条件下,第五种MFW设计模式表现出卓越性能,该模式采用定向向内太阳辐照,在外侧设置空气腔体,并在内侧配置固定的SLF。通过将这一创新的MFW理念整合进建筑立面设计中,本研究可为优化BIPV窗户的设计提供有价值的理论依据和技术参考。
English Abstract
Abstract Building integrated photovoltaic (BIPV) fenestration is presently regarded as a promising technology with multiple features. Nevertheless, the significant obstacle to achieving widespread use of this technology lies in striking a balance between enhancing its power conversion efficiency (PCE) and preserving the interior thermal comfort and visible transmission (VT). This work focuses on the development of a multifunctional window (MFW) that optimizes solar spectrum utilization and enhances the thermal efficiency of the BIPV window. This is achieved by combining semi-transparent photovoltaic (STPV) cells with a selective liquid filter (SLF) in a mono-glazing structure. The energy generation , building energy performance , and indoor lighting capabilities of the MFW are examined compared to existing glazed windows using 3D numerical models associated with analysis of variance (ANOVA). The findings indicate that incorporating SLF improves overall power generation, decreases energy consumption for air conditioning, stabilizes thermal performance, and boosts indoor comfort. Furthermore, the study underscores the substantial potential for energy conservation through the MFW, underscoring the significance of maintaining a harmonious equilibrium between energy production and indoor environmental comfort. Given that winter highlights the crucial relationship between energy advantages and indoor comfort, we examined five different types of MFW designs. In tough winter conditions, the fifth MFW design mode, which employs directional inward solar irradiation and features an air cavity on the exterior side and a stationary SLF on the internal side, demonstrates outstanding performance. By integrating the revolutionary MFW concept into building facades , this research can provide useful insights for improving the design of BIPV windows.
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SunView 深度解读
该多功能光伏窗技术对阳光电源BIPV解决方案具有重要启示。文中半透明光伏组件与选择性液体滤光层的光谱优化思路,可应用于SG系列组串逆变器的MPPT算法优化,针对建筑立面复杂光照条件实现更精准的功率追踪。其能量产出与室内热舒适平衡的设计理念,与阳光电源PowerTitan储能系统结合,可构建建筑光储一体化方案:白天BIPV发电经SG逆变器并网或存储至ST系列PCS,夜间释放电能用于空调负荷削峰。iSolarCloud平台可集成建筑能耗与光伏发电数据,实现预测性能量管理,为智慧建筑微网提供完整技术路径。