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Comparison of selective transmitters for solar thermal applications

机译:太阳能热应用选择性发射机的比较

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摘要

Solar thermal collectors are radiative heat exchangers. Their efficacy is dictated predominantly by their absorption of short wavelength solar radiation and, importantly, by their emission of long wavelength thermal radiation. In conventional collector designs, the receiver is coated with a selectively absorbing surface (Black Chrome, TiNOx, etc.), which serves both of these aims. As the leading commercial absorber, TiNOx consists of several thin, vapor deposited layers (of metals and ceramics) on a metal substrate. In this technology, the solar absorption to thermal emission ratio can exceed 20. If a solar system requires an analogous transparent component-one which transmits the full AM1.5 solar spectrum, but reflects long wavelength thermal emission-the technology is much less developed. Bespoke "heat mirrors" are available from optics suppliers at high cost, but the closest mass-produced commercial technology is low-e glass. Low-e glasses are designed for visible light transmission and, as such, they reflect up to 50% of available solar energy. To address this technical gap, this study investigated selected combinations of thin films that could be deposited to serve as transparent, selective solar covers. A comparative numerical analysis of feasible materials and configurations was investigated using a nondimensional metric termed the efficiency factor for selectivity (EFS). This metric is dependent on the operation temperature and solar concentration ratio of the system, so our analysis covered the practical range for these parameters. It was found that thin films of indium tin oxide (ITO) and ZnS-Ag-ZnS provided the highest EFS. Of these, ITO represents the more commercially viable solution for large-scale development. Based on these optimized designs, proof-of-concept ITO depositions were fabricated and compared to commercial depositions. Overall, this study presents a systematic guide for creating a new class of selective, transparent optics for solar thermal collectors. (C) 2016 Optical Society of America
机译:太阳能热收集器是辐射热交换器。它们的功效主要通过吸收短波长太阳辐射的影响,并且重要的是,通过它们的长波长热辐射发射。在传统的收集器设计中,接收器涂覆有选择性吸收表面(黑色铬,TINOX等),其用于两种目标。作为领先的商业吸收器,TINOX由几个薄的气相沉积层(金属和陶瓷)在金属基材上组成。在该技术中,对热排放比的太阳能吸收可能超过20.如果太阳系需要类似的透明组件 - 则传输完整的AM1.5太阳光谱,但是反映了长波长热发射 - 该技术不太开发。定制的“热镜”可从光学供应商处获得高成本,但最接近的大规模商业技术是低E玻璃。低电子眼镜专为可见光传输而设计,因此,它们反映了可用太阳能的50%。为了解决这一技术差距,本研究调查了可以沉积的薄膜的选定组合用作透明的选择性太阳能覆盖物。使用非潜能度量称为选择性(EFS)的效率因子来研究可行材料和配置的比较数值分析。该度量取决于系统的操作温度和太阳能浓度比,因此我们的分析涵盖了这些参数的实际范围。发现氧化铟锡(ITO)和ZnS-Ag-Zns的薄膜提供了最高的EF。其中,ITO代表了对大规模发展的更具商业上可行的解决方案。基于这些优化的设计,制造了概念验证ITO沉积并与商业沉积进行了比较。总体而言,本研究提出了一个系统指南,用于为太阳能热收集器创建新的选择性透明光学仪的新型选择性。 (c)2016年美国光学学会

著录项

  • 来源
    《Applied optics》 |2016年第14期|共11页
  • 作者单位

    Univ New S Wales Sch Mech &

    Mfg Engn Gate 14 Barker St Sydney NSW 2052 Australia;

    Univ New S Wales Sch Mech &

    Mfg Engn Gate 14 Barker St Sydney NSW 2052 Australia;

    Univ Tulsa Dept Mech Engn 800 S Tucker Dr Tulsa OK 74104 USA;

    Univ Tulsa Dept Mech Engn 800 S Tucker Dr Tulsa OK 74104 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
  • 关键词

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