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Refractive integrated nonimaging solar collectors design and analysis of a novel solar-daylighting-technology

机译:折射式综合非成像太阳能集热器设计和分析新型太阳能采光技术

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摘要

A novel and original category of low-cost static solar-daylighting-collectors named Keywo solar energy, solar collectors, daylighting systems, nonimaging optics, Refractive Integrated Nonimaging Solar Collectors (RINSC) has been designed and thoroughly tested. The RINSC category is based on nonimaging optics and integrates several optical elements, such as prismatic arrays and light guides, into a single-structured embodiment made of solid-dielectric material. The RINSC category is sub-divided in this thesis into four distinctive and original sub-categories/systems: Prismatic Solar Collectors (PSC), Multi-Prismatic Solar Collectors (MPSC), Integrated Multi-Prismatic Solar Collectors (IMPSC) and Vertically Integrated Nonimaging Solar Collectors (VINSC). The optical configuration and compact embodiment of these systems allows them to be integrated into a building façade without creating any protrusion, indicating that they can lead to solar collector systems with high building integration potential. Laboratory and outdoor experimental tests conducted with a series of demonstration prototypes made of clear polymethyl-methacrylate (PMMA) and manufactured by laser ablation process, yield peak transmission efficiencies TE varying from 2% to 8%. Computer simulations indicated that transmission efficiencies TE > 30% are possible. The design and development of the innovative optical systems introduced in this thesis were backed-up with extensive computer ray-tracing analysis, rapid-prototyping, laboratory and outdoor experimental tests. Injection moulding computer simulations and surface analysis concerning the development of the RINSC systems were also conducted. Basic theory and comprehensive literature review are presented. This research has also resulted in the design and prototyping of a novel optical instrumentation named Angular Distribution Imaging Device (ADID), specially developed to analyse the spatial distribution of light emerging from the exit aperture of solar collectors/concentrators. The systems and knowledge described in this thesis may find application in areas such as solar collector systems to harvest sunlight for natural illumination in buildings, solar-photovoltaic and solar-thermal.
机译:设计并彻底测试了新颖新颖的低成本静态静态日光收集器,称为Keywo太阳能,太阳能收集器,日光系统,非成像光学器件,折射集成非成像太阳能收集器(RINSC)。 RINSC类别基于非成像光学,并将几种光学元件(如棱镜阵列和光导)集成到由固体介电材料制成的单结构实施例中。 RINSC类别在本文中分为四个独特的原始子类别/系统:棱镜太阳能收集器(PSC),多棱镜太阳能收集器(MPSC),集成多棱镜太阳能收集器(IMPSC)和垂直集成非成像太阳能集热器(VINSC)。这些系统的光学配置和紧凑的实施方式使它们可以集成到建筑物立面上而不会产生任何突起,这表明它们可以导致具有高建筑物集成潜力的太阳能集热器系统。使用一系列由透明聚甲基丙烯酸甲酯(PMMA)制成并通过激光烧蚀工艺制造的演示原型进行的实验室和室外实验测试,得出峰值透射效率TE在2%至8%之间变化。计算机仿真表明,传输效率TE> 30%是可能的。本文介绍的创新光学系统的设计和开发得到了广泛的计算机射线跟踪分析,快速成型,实验室和室外实验测试的支持。还进行了有关RINSC系统开发的注塑成型计算机模拟和表面分析。介绍了基础理论和综合文献综述。这项研究还导致了一种新型光学仪器的设计和原型设计,该仪器名为Angular Distribution Imaging Device(ADID),专门开发用于分析从太阳能收集器/聚光器出射孔出射的光的空间分布。本文所描述的系统和知识可以在诸如太阳能收集器系统等领域中获得应用,以收集阳光以用于建筑物中的自然照明,太阳能光伏和太阳热能。

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