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Preliminary characterization study of a gold-coated concentratorfor hemispherical longwave irradiance measurements

机译:金涂层浓缩器的初步特征研究半球形龙波辐照度测量

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We report the preliminary characterization results of a gold-coated concentrator used for longwave irradiance measurementsm. Throughput measurements of the concentrator are conducted at 1.562 μm and 10.15 μm using two different approaches, one is referred to a transmittance measurement using the Complete Hemispherical Infrared Laser-based Reflectometer (CHILR)[2] of NIST, and the other one is a direct throughput measurement using an existing thermopile detector for longwave irradiance measurement. For the transmittance measurement using CHILR, two diffuse gold references are selected to generate a Lambertian source by shining a laser on them. Spatial variations of transmittance of the concentrator are also investigated by scanning the laser beam across the opening area of it with a gold diffuser. For the direct throughput measurement, a small diffuse gold integrating sphere of 25.4 mm in diameter is utilized to produce an ideal diffuse source. The thermopile detector measures the radiation passing through the concentrator from the small integrating sphere. The incoming irradiance is determined from signal outputs of the thermopile detector and ambient temperature changes. Comparing with the results from the two approaches, a consistent throughput of the concentrator is obtained about 91 % to 92 %. The error sources and uncertainty in the two measurements are also discussed.
机译:我们报告了用于长波辐照度测量的金涂层集中器的初步表征结果。浓缩器的吞吐量测量使用两种不同的方法在1.562μm和10.15μm处进行,使用NIST的完整半球形红外激光的反射计(Chilr)[2]称为透射率测量,另一个是直接的使用现有的热电探测器进行长波辐照度测量的吞吐量测量。对于使用CHILR的透射率测量,选择两个漫反射金参考文献以通过在它们上发光激光来产生兰伯语源。还通过用金漫射器将激光束扫描激光束来研究聚光器的透射率的空间变化。对于直接通量测量,利用直径为25.4mm的小漫射金积分球产生理想的漫射源。热电堆检测器测量通过小积分球通过浓缩器的辐射。从热电探测器的信号输出和环境温度变化确定进入的辐照度。与来自两种方法的结果相比,获得了约91%至92%的浓缩器的一致产量。还讨论了两个测量中的错误源和不确定性。

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