Suppr超能文献

300至1025纳米波段精密太阳光度计太阳辐射和灯光辐射校准的适用性评估

Evaluation of the Applicability of Solar and Lamp Radiometric Calibrations of a Precision Sun Photometer Operating Between 300 and 1025 nm.

作者信息

Schmid B, Spyak P R, Biggar S F, Wehrli C, Sekler J, Ingold T, Mätzler C, Kämpfer N

出版信息

Appl Opt. 1998 Jun 20;37(18):3923-41. doi: 10.1364/ao.37.003923.

Abstract

Over a period of 3 years a precision Sun photometer (SPM) operating between 300 and 1025 nm was calibrated four times at three different high-mountain sites in Switzerland, Germany, and the United States by means of the Langley-plot technique. We found that for atmospheric window wavelengths the total error (2varsigma-statistical plus systematic errors) of the calibration constants V(0) (lambda), the SPM voltage in the absence of any attenuating atmosphere, can be kept below 1.6% in the UV-A and blue, 0.9% in the mid-visible, and 0.6% in the near-infrared spectral region. For SPM channels within strong water-vapor or ozone absorption bands a modified Langley-plot technique was used to determine V(0) (lambda) with a lower accuracy. Within the same period of time, we calibrated the SPM five times using irradiance standard lamps in the optical labs of the Physikalisch-Meteorologisches Observatorium Davos and World Radiation Center, Switzerland, and of the Remote Sensing Group of the Optical Sciences Center, University of Arizona, Tucson, Arizona. The lab calibration method requires knowledge of the extraterrestrial spectral irradiance. When we refer the standard lamp results to the World Radiation Center extraterrestrial solar irradiance spectrum, they agree with the Langley results within 2% at 6 of 13 SPM wavelengths. The largest disagreement (4.4%) is found for the channel centered at 610 nm. The results of these intercomparisons change significantly when the lamp results are referred to two different extraterrestrial solar irradiance spectra that have become recently available.

摘要

在3年的时间里,一台工作波长范围为300至1025纳米的精密太阳光度计(SPM),通过兰利绘图技术,在瑞士、德国和美国的三个不同高山站点进行了四次校准。我们发现,对于大气窗口波长,校准常数V(0)(λ)(即无任何衰减大气时的SPM电压)的总误差(2ς - 统计误差加系统误差)在紫外 - A和蓝光区域可保持在1.6%以下,在中可见光区域为0.9%,在近红外光谱区域为0.6%。对于处于强水汽或臭氧吸收带内的SPM通道,采用了改进的兰利绘图技术来确定V(0)(λ),但精度较低。在同一时期,我们在瑞士达沃斯物理气象观测站和世界辐射中心以及美国亚利桑那州图森市亚利桑那大学光学科学中心遥感组的光学实验室中,使用辐照度标准灯对SPM进行了五次校准。实验室校准方法需要知道地外光谱辐照度。当我们将标准灯的结果参考世界辐射中心的地外太阳辐照度光谱时,在13个SPM波长中的6个波长处,它们与兰利结果的一致性在2%以内。最大的差异(4.4%)出现在中心波长为610纳米的通道。当将灯的结果参考最近可用的两种不同地外太阳辐照度光谱时,这些比对结果会发生显著变化。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验