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首页> 外文期刊>Journal of atmospheric and oceanic technology >The Accuracy of Marine Shadow-Band Sun Photometer Measurements of Aeroso Optical Thickness and Angstrom Exponent
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The Accuracy of Marine Shadow-Band Sun Photometer Measurements of Aeroso Optical Thickness and Angstrom Exponent

机译:海洋阴影带太阳光度计测量气溶胶光学厚度和埃指数的准确性

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An analytical uncertainty propagation model is used in conjunction with laboratory and field data to quantify the uncertainty in measurements of the direct-normal irradiance, aerosol optical thickness, and Angstrom exponent made with a ship-mounted fast-rotating shadow-band radiometer (FRSR). Total uncertainties in FRSR measurements of aerosol optical thickness are found to be 0.02-0.03 at the 95% confidence level (two standard deviations). The "lever-arm" effect, a salient characteristic of the Langely technique in which uncertainties in aerosol optical thickness measurements are reduced as the solar zenith angle increases, is essentially offset by orientation uncertainty. Lack of a lever-arm effect precludes Langley calibration of FRSRs while at sea; they must be calibrated on land. Uncertainties in FRSR measurements of the two-wavelength Angstroem exponent are shown to depend strongly on the aerosol optical thickness, with the maximum uncertainty of 0.6 associated with clean, maritime air masses.
机译:分析不确定性传播模型与实验室和现场数据结合使用,以量化使用船载快速旋转阴影带辐射计(FRSR)进行的直接法线辐照度,气溶胶光学厚度和Angstrom指数的测量中的不确定性。在95%置信水平(两个标准偏差)下,气溶胶光学厚度的FRSR测量的总不确定度为0.02-0.03。 “杠杆臂”效应是Langely技术的显着特征,其中随着太阳天顶角的增加,气溶胶光学厚度测量中的不确定性会降低,但基本上会被方向不确定性所抵消。由于缺乏杠杆效应,因此无法在海上对FRSR进行Langley校准;它们必须在陆地上校准。结果表明,两波长昂斯特罗姆指数的FRSR测量不确定性在很大程度上取决于气溶胶光学厚度,最大不确定度0.6与洁净的海洋气团有关。

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