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LITE aerosol retrievals with improved calibration and retrieval approaches in support of CALIPSO

机译:支持CALIPSO的具有改进的校准和检索方法的LITE气溶胶检索

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摘要

Two of the biggest uncertainties in understanding and predicting climate change are the effects of aerosols and clouds. NASA's satellite mission, CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations, will provide vertical, curtain-like images of the atmosphere on a global scale and assist scientists in better determining how aerosols and clouds affect the Earth's radiation budget. The data from a previous space shuttle mission, LITE (Lidar In-space Technology Experiment, launched in Sept., 1994), have been employed to develop algorithms (e.g., spaceborne lidar system calibration and aerosol retrievals) in support of CALIPSO. In this work, a new calibration approach for 1064 nm lidar channel has been developed via comparisons of the 532 nm and 1064 nm backscatter signals from cirrus clouds. Some modeling analyses and simulations have also been implemented for CALIPSO's narrow bandwidth receiver filter to quantitatively distinguish Cabannes scattering from the full bandwidth Rayleigh scattering and correct the calibration of 532 nm channel. LITE data were also employed in some analyses with the aim of recovering the estimates of the backscatter ratio, R, of clean air regions. The uncertainties in aerosol retrieval due to different error sources, especially the bias and random errors of the extinction-to-backscatter ratio, Sa, have been investigated. A revised Sa table look-up approach is incorporated with two notable revisions for improved S a selection, which, as a consequence enable more bounded aerosol retrievals. Approximate but quantitatively useful multiple-scattering corrections are reported using a modeled multiple scattering factor, eta, which approximates the reduced attenuation caused by multiple scattering. Assessment of multiple scattering effects for a reasonable range of eta values is included for a combination of retrieval approaches.
机译:理解和预测气候变化的两个最大不确定因素是气溶胶和云的影响。 NASA的卫星任务CALIPSO(云气激光雷达和红外探路者卫星观测)将在全球范围内提供垂直,类似窗帘的大气图像,并帮助科学家更好地确定气溶胶和云如何影响地球的辐射预算。以前的航天飞机任务LITE(1994年9月发射的激光雷达太空技术实验)已被用于开发算法(例如星载激光雷达系统校准和气溶胶回收),以支持CALIPSO。通过比较卷云的532 nm和1064 nm反向散射信号,开发了1064 nm激光雷达通道的新校准方法,还对CALIPSO的窄带宽接收器滤波器进行了一些建模分析和仿真,以定量区分Cabannes散射和全带宽瑞利散射和校正532 nm通道的校准,在某些分析中还使用了LITE数据目的是恢复对干净空气区域的反向散射比R的估计。研究了由于不同误差源而引起的气溶胶回收的不确定性,特别是消光与后向散射比Sa的偏差和随机误差。修订的Sa表查找方法与两个显着的修订合并在一起,以改进S a的选择,因此可以实现更有限的气溶胶回收。使用建模的多重散射因子eta报告了近似但在定量上有用的多重散射校正,该因子近似于多重散射导致的衰减降低。对于合理的eta值范围,对多个散射效应进行了评估,以结合多种检索方法。

著录项

  • 作者

    Wang Xiaozhen;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en_US
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