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Comparison of Wake-Vortex Parameters Measured by Pulsed and Continuous-Wave Lidars

机译:脉冲和连续波激光雷达测量的尾涡参数比较

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摘要

Field trials carried out at Tarbes airfield in the summer of 2002 offered the unique opportunity to compare the results of simultaneous wake-vortex measurements by the 2-μm pulsed Doppler lidar from DLR, German Aerospace Research Center, and the 10-μm continuous wave (cw) Doppler lidars from ONERA and QinetiQ. The discrepancies in vortex core position obtained from the data of the pulsed lidar and the cw lidars are 9 m for the vertical and 13 m for the horizontal co-ordinates. The accuracies of the vortex circulation measurements with the DLR and ONERA lidars are almost the same and equal 13 m~2/s. This accuracy and the long-range capability of the pulsed lidar allows precise measurements over long periods from the moment of wake generation to a progressed state of vortex decay. Moreover, the influence of different atmospheric turbulence conditions and aircraft configurations on the wake-vortex circulation can be analyzed. This has been demonstrated out of ground effect under conditions of weak to moderate levels of turbulence.
机译:2002年夏天在塔布机场进行的现场试验提供了独特的机会,可以比较DLR,德国航空研究中心的2微米脉冲多普勒激光雷达和10微米连续波同时进行的尾流涡流测量结果( cw)来自ONERA和QinetiQ的多普勒激光雷达。从脉冲激光雷达和连续激光雷达的数据获得的旋涡芯位置差异在垂直方向上为9 m,在水平方向上为13 m。 DLR和ONERA激光雷达的涡旋环流测量精度几乎相同,等于13 m〜2 / s。脉冲激光雷达的这种准确性和远距离能力允许在从唤醒产生的时刻到涡旋衰减的进展状态的长时间内进行精确测量。此外,可以分析不同的大气湍流条件和飞机配置对尾涡旋流的影响。在弱到中等湍流水平的情况下,这已被证明是出于地面效应。

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