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Field-deployable diode-laser-based differential absorption lidar (DIAL) for profiling water vapor

机译:可现场部署的基于二极管激光器的差分吸收激光雷达(DIAL),用于分析水蒸气

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A field-deployable water vapor profiling instrument that builds on the foundation of the preceding generations of diode-laser-based differential absorption lidar (DIAL) laboratory prototypes was constructed and tested. Significant advances are discussed, including a unique shared telescope design that allows expansion of the outgoing beam for eye-safe operation with optomechanical and thermal stability; multistage optical filtering enabling measurement during daytime bright-cloud conditions; rapid spectral switching between the online and offline wavelengths enabling measurements during changing atmospheric conditions; and enhanced performance at lower ranges by the introduction of a new filter design and the addition of a wide field-of-view channel. Performance modeling, testing, and intercomparisons are performed and discussed. In general, the instrument has a 150 m range resolution with a 10 min temporal resolution; 1 min temporal resolution in the lowest 2 km of the atmosphere is demonstrated. The instrument is shown capable of autonomous long-term field operation a?? 50 days with a 95% uptime a?? under a broad set of atmospheric conditions and potentially forms the basis for a ground-based network of eye-safe autonomous instruments needed for the atmospheric sciences research and forecasting communities.
机译:在前几代基于二极管激光的差分吸收激光雷达(DIAL)实验室原型的基础上,构造并测试了可在现场部署的水蒸气轮廓分析仪。讨论了重大进展,包括独特的共享望远镜设计,该设计可扩展出射光束,从而在具有光机械和热稳定性的情况下实现人眼安全操作;多级光学滤波,可在白天晴空条件下进行测量;在线和离线波长之间的快速光谱切换可在变化的大气条件下进行测量;通过引入新的滤波器设计和增加宽视场通道,增强了在较低范围的性能。性能建模,测试和比对得以执行和讨论。通常,该仪器具有150 m的范围分辨率和10 min的时间分辨率。演示了在最低的2 km大气中1 min的时间分辨率。显示该仪器具有自主长期现场操作的能力a ?? 50天的正常运行时间> 95%?在广泛的大气条件下,并有可能构成大气科学研究和预报团体所需的地面安全眼动自主仪器网络的基础。

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