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An algorithm to retrieve ice water content profiles in cirrus clouds from the synergy of ground-based lidar and thermal infrared radiometer measurements

机译:一种从地面激光雷达和热红外辐射计测量中的协同作用中检索卷云中云云含水量曲线的算法

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摘要

The algorithm presented in this paper was developed to retrieve ice water content (IWC) profiles in cirrus clouds. It is based on optimal estimation theory and combines ground-based visible lidar and thermal infrared (TIR) radiometer measurements in a common retrieval framework in order to retrieve profiles of IWC together with a correction factor for the backscatter intensity of cirrus cloud particles. As a first step, we introduce a method to retrieve extinction and IWC profiles in cirrus clouds from the lidar measurements alone and demonstrate the shortcomings of this approach due to the backscatter-to-extinction ambiguity. As a second step, we show that TIR radiances constrain the backscattering of the ice crystals at the visible lidar wavelength by constraining the ice water path (IWP) and hence the IWC, which is linked to the optical properties of the ice crystals via a realistic bulk ice microphysical model. The scattering phase function obtained from the microphysical model is flat around the backscatter direction (i.e., there is no backscatter peak). We show that using this flat backscattering phase function to define the backscatter-to-extinction ratio of the ice crystals in the retrievals with the lidar-only algorithm results in an overestimation of the IWC, which is inconsistent with the TIR radiometer measurements. Hence, a synergy algorithm was developed that combines the attenuated backscatter profiles measured by the lidar and the measurements of TIR radiances in a common optimal estimation framework to retrieve the IWC profile together with a correction factor for the phase function of the bulk ice crystals in the backscattering direction. We show that this approach yields consistent lidar and TIR results. The resulting lidar ratios for cirrus clouds are found to be consistent with previous independent studies.
机译:本文呈现的算法是开发的,以检索卷云云中的冰水含量(IWC)型材。它基于最佳估计理论,并将基于基于基于的可见激光雷达和热红外(TIR)辐射计测量结合在常见的检索框架中,以便将IWC的轮廓与Cirrus云粒子的反向散射强度的校正因子一起检索。作为第一步,我们介绍了一种方法来单独从激光雷达测量中检索螺旋云中的灭火和IWC型材,并展示了这种方法的缺点,因为反向散射到灭绝模糊。作为第二步,我们表明TIR Radiasces通过约束冰水路径(IWP)并因此通过逼真地与冰晶的光学性质连接到可见光雷达波长处的冰晶在可见光雷达波长处的反向散射。批量冰上微型模型。从微微物理模型获得的散射相函数围绕反向散射方向(即,没有反向散射峰)。我们表明,使用这种平坦的反向散射相位功能来定义检索中的冰晶的反向散射与消光比与仅限激光乐节算法导致IWC的高估,这与TIR辐射计测量不一致。因此,开发了一种协同算法,其结合了LIDAR测量的衰减的反向散射轮廓和在公共最佳估计框架中的TIR放射测量,以将IWC分布与散装冰晶中的相位函数的校正因子一起检索反向散射方向。我们表明这种方法产生了一致的激光率和TIR结果。发现卷云云的激光乐节比与先前的独立研究一致。

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