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Cloud Optical Depth Retrievals From SolarBackground “Signals” of Micropulse Lidars

机译:来自微脉冲激光雷达的SolarBackground“信号”的云光学深度反演

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摘要

Pulsed lidars are commonly used to retrieve vertical distributions of cloud and aerosol layers. It is widely believed that lidar cloud retrievals (other than cloud base altitude) are limited to optically thin clouds. Here, we demonstrate that lidars can retrieve optical depths of thick clouds using solar background light as a signal, rather than (as now) merely a noise to be subtracted. Validations against other instruments show that retrieved cloud optical depths agree within 10%–15% for overcast stratus and broken clouds. In fact, for broken cloud situations, one can retrieve not only the aerosol properties in clear-sky periods using lidar signals, but also the optical depth of thick clouds in cloudy periods using solar background signals. This indicates that, in general, it may be possible to retrieve both aerosol and cloud properties using a single lidar. Thus, lidar observations have great untapped potential to study interactions between clouds and aerosols.
机译:脉冲激光雷达通常用于获取云层和气溶胶层的垂直分布。人们普遍认为,激光雷达云的检索(除云底高度以外)仅限于光学上稀薄的云。在这里,我们证明了激光雷达可以使用太阳背景光作为信号来获取厚云的光学深度,而不是(像现在一样)仅仅是要减去的噪声。针对其他仪器的验证表明,对于阴云层和破碎的云,检索到的云光学深度在10%–15%之间。实际上,对于碎云的情况,不仅可以使用激光雷达信号在晴朗的天空时期恢复气溶胶特性,而且可以在多云的季节使用太阳背景信号来获取厚云的光学深度。这表明,通常可以使用单个激光雷达同时获取气溶胶和云的特性。因此,激光雷达观测具有巨大的潜力,可用于研究云层和气溶胶之间的相互作用。

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