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LIDAR-based Turbulence Intensity Calculation along Glide Paths

机译:基于LIDAR的湍流强度计算沿滑动路径计算

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The use of glide-path scan data of the LIDAR at HKIA to calculate turbulence intensity distribution is presented in this paper. To minimize azimuthal averaging up to a range of 10 km for turbulence calculation, the laser beam is configured to scan at a rather slow speed of 0.8 degrees/s. As the LIDAR is required to perform other scans for operational applications, the slow scan and thus turbulence intensity calculation is only performed over the runway corridor to the west of the north runway, where most of the aircraft approaches are made. Two methods of determining turbulence intensity are considered, namely, the longitudinal and the azimuthal structure functions. They are found to provide comparable values of EDR~(1/3). The application of the turbulence intensity determined along the glide path is demonstrated using two examples of turbulence encounter by the pilots. The LIDAR-determined turbulence intensities are found to be generally consistent with the pilot reports. Future study would include the comparison of EDR~(1/3) values derived from the LIDAR and the flight data recorder (FDR) data of the aircraft. The methodology presented in this paper has the potential for application in turbulence alerting at the airport.
机译:本文提出了利用香港亚洲利雷达的滑翔路径扫描数据来计算湍流强度分布。为了使湍流计算最大限度地减少高达10km的范围,激光束被配置为以0.8度/秒的相当慢速扫描。由于LIDAR需要执行其他扫描的操作应用,因此慢扫描和因此湍流强度计算仅在北跑道以西的跑道走廊上执行,其中大部分飞机方法都是。考虑两种确定湍流强度的方法,即纵向和方位角结构功能。他们被发现提供EDR〜(1/3)的可比值。使用飞行员的湍流示例来证明沿着滑动路径确定的湍流强度的应用。激光雷达确定的湍流强度被认为通常与试点报告一致。未来的研究将包括从激光器和飞行器的飞行数据记录仪(FDR)数据的EDR〜(1/3)值的比较。本文提出的方法具有在机场警报的湍流中的应用。

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