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Algorithms and uncertainties for the determination of multispectral irradiance components and aerosol optical depth from a shipborne rotating shadowband radiometer

机译:从船载旋转阴影带辐射计确定多光谱辐照部件和气溶胶光学深度的算法和不确定性

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The 19-channel rotating shadowband radiometer GUVis-3511 built by Biospherical Instruments provides automated shipborne measurements of the direct, diffuse and global spectral irradiance components without a requirement for platform stabilization. Several direct sun products, including spectral direct beam transmittance, aerosol optical depth, ?ngstr?m exponent and precipitable water, can be derived from these observations. The individual steps of the data analysis are described, and the different sources of uncertainty are discussed. The total uncertainty of the observed direct beam transmittances is estimated to be about 4?% for most channels within a 95?% confidence interval for shipborne operation. The calibration is identified as the dominating contribution to the total uncertainty. A comparison of direct beam transmittance with those obtained from a Cimel sunphotometer at a land site and a manually operated Microtops II sunphotometer on a ship is presented. Measurements deviate by less than 3 and 4?% on land and on ship, respectively, for most channels and in agreement with our previous uncertainty estimate. These numbers demonstrate that the instrument is well suited for shipborne operation, and the applied methods for motion correction work accurately. Based on spectral direct beam transmittance, aerosol optical depth can be retrieved with an uncertainty of 0.02 for all channels within a 95?% confidence interval. The different methods to account for Rayleigh scattering and gas absorption in our scheme and in the Aerosol Robotic Network processing for Cimel sunphotometers lead to minor deviations. Relying on the cross calibration of the 940?nm water vapor channel with the Cimel sunphotometer, the column amount of precipitable water can be estimated with an uncertainty of ±0.034?cm.
机译:由生物学仪器建造的19通道旋转影带辐射计GUVIS-3511提供了直接,漫射和全局光谱辐照部件的自动船载测量,而无需平台稳定性。几种直接阳光产品,包括光谱直接射线透射率,气溶胶光学深度,Δnstrαm指数和可降水,可以源自这些观察结果。描述了数据分析的各个步骤,并且讨论了不同的不确定性源。对于船舶操作的95Ω%置信区间内的大多数通道,估计观察到的直射射线透射率的总不确定性估计为约4‰。校准被确定为对总不确定性的主导贡献。呈现了直接光束透射率与从陆地站点和手动操作的Microotops II船上的阳光镜II阳光计的比较。测量分别在土地和船上偏离3%和4?%,以适用于大多数渠道,并与我们以前的不确定性估计一致。这些数字表明该仪器非常适合于船载操作,并准确地进行运动校正的应用方法。基于光谱直接光束透射率,可以在95Ω%置信区间内的所有通道的不确定度检索气溶胶光学深度。考虑我们方案中的瑞利散射和气体吸收的不同方法以及用于灵活的太阳镜的气溶胶机器人网络处理导致微小的偏差。依靠940·NM水蒸气通道的交叉校准与灵芝阳光病,可以估计沉淀水的柱量,不确定度为±0.034Ω厘米。

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