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Direct solar spectral irradiance and transmittance measurements from 350 to 2500 nm

机译:直接在350至2500 nm范围内测量太阳光谱的辐照度和透射率

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摘要

A radiometrically stable, commercially available spectroradiometer was used in conjunction with a simple, custom-designed telescope to make spectrally continuous measurements of solar spectral transmittance and directly transmitted solar spectral irradiance. The wavelength range of the instrument is 350-2500 nm and the resolution is 3-11.7 nm. Laboratory radiometric calibrations show the instrument to be stable to better than 1.0% over a nine-month period. The instrument and telescope are highly portable, can be set up in a matter of minutes, and can be operated by one person. A method of absolute radiometric calibration that can be tied to published top-of-the-atmosphere (TOA) solar spectra in valid Langley channels as well as regions of strong molecular absorption is also presented. Highaltitude Langley plot calibration experiments indicate that this technique is limited ultimately by the current uncertainties in the TOA solar spectra, approximately 2-3%. Example comparisons of measured and MODTRAN-modeled direct solar irradiance show that the model can be parameterized to agree with measurements over the large majority of the wavelength range to the 3% level for the two example cases shown. Side-by-side comparisons with a filter-based solar radiometer are in excellent agreement, with a mean absolute difference of τ=0.0036 for eight overlapping wavelengths over three experiment days.
机译:将辐射稳定的,可商购的分光辐射仪与简单的,定制设计的望远镜结合使用,以对太阳光谱透射率和直接透射的太阳光谱辐照度进行光谱连续测量。仪器的波长范围是350-2500 nm,分辨率是3-11.7 nm。实验室辐射度校准表明,该仪器在9个月的时间内稳定稳定在1.0%以上。仪器和望远镜具有高度的便携性,可以在几分钟内完成设置,并且可以由一个人操作。还提出了一种绝对辐射定标方法,该方法可以与有效Langley通道以及强分子吸收区域中已发布的大气顶(TOA)太阳光谱联系在一起。高空Langley图校准实验表明,该技术最终受到TOA太阳光谱中当前不确定性的限制,约为2-3%。对实测辐射和MODTRAN模型直接太阳辐照度进行的示例比较表明,对于所示的两个示例案例,可以对模型进行参数设置,使其与大部分波长范围内的测量值一致,达到3%的水平。与基于过滤器的太阳辐射计的并排比较非常吻合,三个实验日内八个重叠波长的平均绝对差为τ= 0.0036。

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