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On the feasibility of colored glazed thermal solar collectors based on thin film interference filters

机译:基于薄膜干涉滤光片的彩色玻璃集热太阳能集热器的可行性

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摘要

Glazed thermal solar collectors, typically equipped with black, optical selective absorber sheets, exhibit good energy conversion efficiency. However, the black color, and sometimes the visibility of tubes and corrugations of the metal sheets, limit the architectural integration into buildings. In order to overcome this drawback, interference filters are considered as a promising approach. Multilayered thin film stacks deposited on the cover glass can produce a colored reflection hiding the black absorber without a great loss of energy. These interference filters are designed and optimized by numerical simulation. Such coatings are deposited by vacuum processes (e.g. magnetron sputtering) and also via the SolGel method. Optical measurements, such as real-time laser-reflectometry and spectrophotometry, are suitable to determine film thicknesses and optical constants of individual layers, and to measure color coordinates and solar transmittance for the multilayer stacks. Advantages and disadvantages of the different coating processes are discussed. (C) 2004 Elsevier B.V. All rights reserved.
机译:玻璃热太阳能收集器通常配备黑色的光学选择性吸收板,具有良好的能量转换效率。但是,黑色,有时甚至是可见的管子和金属波纹板,限制了建筑与建筑物的融合。为了克服该缺点,干扰滤波器被认为是有前途的方法。沉积在防护玻璃上的多层薄膜叠层可以产生彩色反射,从而遮盖黑色吸收剂,而不会造成很大的能量损失。这些干扰滤波器是通过数值模拟设计和优化的。这样的涂层通过真空工艺(例如磁控溅射)并且还通过SolGel方法沉积。诸如实时激光反射计和分光光度法的光学测量适合于确定各个层的膜厚度和光学常数,并且适合于测量多层堆叠的色坐标和日光透射率。讨论了不同涂层工艺的优缺点。 (C)2004 Elsevier B.V.保留所有权利。

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