建筑围护结构的创新光伏半透明组件

R. Corrao, Marco Morini, Luisa Pastore
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引用次数: 5

摘要

规范建筑能源效率和环境可持续性的国际指令为新一代“零能耗建筑”的建造建立了严格的参数,指出了建筑围护结构组件的透光率限制,并鼓励使用可再生能源。从这个意义上说,光伏行业的目标是为建筑围护结构的集成定义新颖有效的解决方案,以其多功能特征脱颖而出。在概述了主要的光伏技术和建筑集成应用,重点是半透明围护结构解决方案之后,本文展示了巴勒莫大学建筑系正在进行的一项研究的结果,该研究旨在为光伏和节能半透明建筑围护结构的建设定义创新的解决方案。特别是,研究重点是玻璃块板在隔热、透光、产能和机械阻力方面的优化。设计了新的玻璃砌块结构,以降低其U值,并集成第三代光伏技术,以生产绿色能源。此外,设计了一个干燥组装系统,用于建造由DSC集成玻璃块制成的半透明预应力板,能够保证高水平的水平阻力,即使在干燥,热带和温带地区或不利的光线条件下,也可以建造半透明的光伏和高效的建筑围护结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Photovoltaic Translucent Components for the Building Envelope
International directives that regulates buildings energy efficiency and environmental sustainability establish strict parameters for the construction of a new generation of “Zero Energy Buildings” indicating transmittance limits for building envelope components and encouraging the use of renewable sources. In this sense, the PV sector aims at the definition of novel efficient solutions for the integration in the building envelope, standing out for their multifunctional features. After an overview on the main PV technologies and building integrated applications, focusing on semi-transparent envelope solutions, the paper shows the results of a research that is being carried out at the Department of Architecture of the University of Palermo, aimed to define innovative solutions for the construction of photovoltaic and energy efficient translucent building envelopes. In particular, the research focuses on the optimization of glassblock panels in terms of thermal insulation, light transmittance, energy production and mechanical resistance. New configurations of glassblock were designed in order to reduce its U value and integrate 3rd generation PV technologies for the production of green energy. Furthermore, a dry assembly system has been designed for the construction of translucent prestressed panels made of DSC integrated glassblocks that are able to guarantee high levels of resistance to horizontal actions and to build translucent, photovoltaic and efficient building envelopes even in dry, tropical and temperate areas or in unfavourable light conditions.
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