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首页> 外文期刊>Journal of atmospheric and oceanic technology >Demonstration Measurements of Water Vapor, Cirrus Clouds, and Carbon Dioxide Using a High-Performance Raman Lidar
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Demonstration Measurements of Water Vapor, Cirrus Clouds, and Carbon Dioxide Using a High-Performance Raman Lidar

机译:使用高性能拉曼激光雷达进行水蒸气,卷云和二氧化碳的演示测量

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摘要

Profile measurements of atmospheric water vapor, cirrus clouds, and carbon dioxide using the Raman Airborne Spectroscopic lidar (RASL) during ground-based, upward-looking tests are presented here. These measurements improve upon any previously demonstrated using Raman lidar. Daytime boundary layer profiling of water vapor mixing ratio up to an altitude of approximately 4 km under moist, midsummer conditions is performed with less than 5% random error using temporal and spatial resolution of 2 min and 60-210 m, respectively. Daytime cirrus cloud optical depth and extinction-to-backscatter ratio measurements are made using a 1-min average. The potential to simultaneously profile carbon dioxide and water vapor mixing ratio through the boundary layer and extending into the free troposphere during the nighttime is also demonstrated.
机译:本文介绍了在地面向上看的测试过程中,使用拉曼机载光谱激光雷达(RASL)对大气水蒸气,卷云和二氧化碳进行的剖面测量。这些测量结果比以前使用拉曼激光雷达演示的结果有所改善。分别在2分钟和60-210 m的时间和空间分辨率下,在潮湿,仲夏条件下,在不超过5%的海拔高度下,对水汽混合比进行白天边界层剖析,随机误差小于5%。白天卷云的光学深度和消光与背向散射比的测量均使用1分钟平均值。还显示了在夜间通过边界层同时描画二氧化碳和水蒸气混合比并扩展到自由对流层的潜力。

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