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A Langley Extrapolation Technique Applied to Atmospheric Aerosol LIDARs

机译:Langley外推技术应用于大气气溶胶激光雷达

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The well-known Langley extrapolation technique produces measurements of atmospheric optical depth (AOD) by collecting direct sun irradiance at multiple zenith angles. One common application of this technique is used by sun photometers such as in NASA's AErosol Robotic Network (AERONET). This large, spatially distributed network collects time averaging data from across the globe and applying Beer's Law, produces hourly estimates of AOD. While this technique has produced excellent data, the dependence on direct sun irradiance requires cloudless skies and line-of-sight to the sun. Atmospheric LIDARs, on the other hand, can operate in the presence of clouds and can also produce range-resolved measurements of AOD by applying the same Langley technique. For aerosol LIDARs, this technique requires that the LIDAR be capable of producing high quality waveforms within the atmospheric coherence time and also be capable of taking measurements off zenith. At least two unique angles are required to produce data, although 3+ are recommended. This paper will present an overview of the Langley technique applied with a 1064 nm atmospheric aerosol LIDAR, an overview of the LIDAR hardware and capabilities, sample data collected by the LIDAR, and challenges associated with this technique. It will be shown that while this technique is useful, it requires measurements at all three angles to be made when the atmosphere is reasonably horizontally homogenous. Furthermore, the system optics, alignment, and laser power must be kept constant (keeping the LIDAR's system constant the same for all measurements) for the data to be useful in a Langley analysis.
机译:众所周知的Langley外推技术通过收集多个天顶角的直接太阳辐照度来产生大气光学深度(AOD)的测量值。这种技术的一种常见应用是太阳光度计使用的,例如NASA的AErosol机器人网络(AERONET)。这个大型的空间分布网络收集全球各地的时间平均数据,并应用比尔定律,每小时生成AOD估算值。尽管此技术产生了出色的数据,但依赖于直接的太阳辐照需要无云的天空和太阳的视线。另一方面,大气LIDAR可以在有云的情况下运行,并且还可以通过应用相同的Langley技术来生成AOD的距离分辨测量结果。对于气溶胶激光雷达,该技术要求激光雷达能够在大气相干时间内产生高质量的波形,并且还能够进行天顶测量。尽管建议使用3+,但至少需要两个唯一的角度才能生成数据。本文将概述应用于1064 nm大气气溶胶激光雷达的Langley技术,激光雷达的硬件和功能,激光雷达收集的样本数据以及与该技术相关的挑战。将显示出,尽管该技术是有用的,但当大气在水平方向上相当均匀时,它需要在所有三个角度进行测量。此外,为了使数据在Langley分析中有用,必须保持系统的光学特性,对准和激光功率恒定(对于所有测量而言,都应使LIDAR的系统恒定不变)。

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