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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Deriving clear-sky longwave spectral flux from spaceborne hyperspectral radiance measurements: a case study with AIRS observations
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Deriving clear-sky longwave spectral flux from spaceborne hyperspectral radiance measurements: a case study with AIRS observations

机译:从太空发载高光谱辐射测量中获取清晰的天空光波通量:采用空气观测的案例研究

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摘要

Previous studies have shown that longwave (LW) spectral fluxes have unique merit in climate studies. Using Atmospheric Infrared Sounder (AIRS) radiances as a case study, this study presents an algorithm to derive the entire LW clear-sky spectral fluxes from spaceborne hyperspectral observations. No other auxiliary observations are needed in the algorithm. A clear-sky scene is identified using a three-step detection method. The identified clear-sky scenes are then categorized into different sub-scene types using information about precipitable water, lapse rate and surface temperature inferred from the AIRS radiances at six selected channels. A previously established algorithm is then used to invert AIRS radiances to spectral fluxes over the entire LW spectrum at 10?cm?1 spectral interval. Accuracy of the algorithms is evaluated against collocated Clouds and the Earth's Radiant Energy System (CERES) observations. For nadir-view observations, the mean difference between outgoing longwave radiation (OLR) derived by this algorithm and the collocated CERES OLR is 1.52?Wm?2 with a standard deviation of 2.46?Wm?2. When the algorithm is extended for viewing zenith angle up to 45°, the performance is comparable to that for nadir-view results.
机译:以前的研究表明,长波(LW)光谱通量在气候研究中具有独特的优点。本研究采用大气红外发声器(Airs)Radiances作为一个案例研究,呈现了从太空冰光谱观测中导出整个LW清空光谱通量的算法。算法中不需要其他辅助观察。使用三步检测方法识别清晰的天空场景。然后,使用关于六个选定通道的空气辐射推断出可降水,流逝速率和表面温度的信息,将所识别的清晰度场景分为不同的子场景类型。然后使用先前建立的算法在10?cm?1光谱间隔将空气辐射反转到整个LW光谱上的光谱通量。对算法的准确性进行评估针对配偶云和地球的辐射能量系统(CERES)观察来评估。对于Nadir-View观察,通过该算法和并发的CERES OLR导出的输出长波辐射(OLR)之间的平均差异为1.52?WM?2,标准偏差为2.46?WM?2。当算法扩展以查看增象角度高达45°时,性能与Nadir-View结果相当。

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