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Airborne differential absorption lidar system for measurements of atmospheric water vapor and aerosols

机译:机载差分吸收式激光雷达系统,用于测量大气中的水蒸气和气溶胶

摘要

An airborne differential absorption lidar (DIAL) system has been developed at the NASA Langley Research Center for remote measurements of atmospheric water vapor (H2O) and aerosols. A solid-state alexandrite laser with a 1-pm linewidth and greater than 99.85% spectral purity was used as the on-line transmitter. Solid-state avalanche photodiode detector technology has replaced photomultiplier tubes in the receiver system, providing an average increase by a factor of 1.5-2.5 in the signal-to-noise ratio of the H2O measurement. By incorporating advanced diagnostic and data-acquisition instrumentation into other subsystems, we achieved additional improvements in system operational reliability and measurement accuracy. Laboratory spectroscopic measurements of H2O absorption-line parameters were performed to reduce the uncertainties in our knowledge of the absorption cross sections. Line-center H2O absorption cross sections were determined, with errors of 3-6%, for more than 120 lines in the 720-nm region. Flight tests of the system were conducted during 1989-1991 on the NASA Wallops Flight Facility Electra aircraft, and extensive intercomparison measurements were performed with dew-point hygrometers and H2O radiosondes. The H2O distributions measured with the DIAL system differed by less than 10% from the profiles determined with the in situ probes in a variety of atmospheric conditions.
机译:NASA兰利研究中心已开发出一种机载差分吸收激光雷达(DIAL)系统,用于远程测量大气中的水蒸气(H2O)和气溶胶。在线发射器使用线宽为1-pm且光谱纯度大于99.85%的固态变石激光器。固态雪崩光电二极管检测器技术已取代了接收器系统中的光电倍增管,使H2O测量的信噪比平均提高了1.5-2.5倍。通过将高级诊断和数据采集仪器集成到其他子系统中,我们在系统运行可靠性和测量精度方面实现了进一步的改进。进行了H2O吸收线参数的实验室光谱测量,以减少我们对吸收截面的了解中的不确定性。确定了720 nm区域中的120多个线的线心H2O吸收截面,误差为3-6%。该系统的飞行测试是在1989-1991年期间在NASA Wallops飞行装置Electra飞机上进行的,并且使用露点湿度计和H2O无线电探空仪进行了广泛的比对测量。在各种大气条件下,用DIAL系统测得的H2O分布与用原位探针测得的分布曲线相差不到10%。

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