首页> 外文期刊>Journal of Zhejiang University SCIENCE A >Performance of LIDAR- and radar-based turbulence intensity measurement in comparison with anemometer-based turbulence intensity estimation based on aircraft data for a typical case of terrain-induced turbulence in association with a typhoon
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Performance of LIDAR- and radar-based turbulence intensity measurement in comparison with anemometer-based turbulence intensity estimation based on aircraft data for a typical case of terrain-induced turbulence in association with a typhoon

机译:与基于风速计的基于飞机数据的风速湍流强度估计相比,基于LIDAR和雷达的湍流强度测量的性能,该数据基于飞机数据与台风相关的典型地形湍流

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The Hong Kong Observatory (HKO) provides low-level turbulence alerting service for the Hong Kong International Airport (HKIA) through the windshear and turbulence warning system (WTWS). In the WTWS, turbulence intensities along the flight paths of the airport are estimated based upon correlation equations established between the surface anemometer data and the turbulence data from research aircraft before the opening of the airport. The research aircraft data are not available on day-to-day basis. The remote sensing meteorological instruments, such as the Doppler light detection and ranging (LIDAR) and radar, may be used to provide direct measurements of turbulence intensities over the runway corridors. The performances of LIDAR- and radar-based turbulence intensity data are studied in this paper based on actual turbulence intensity measurements made on 423 commercial jets for a typical case of terrain-induced turbulence in association with a typhoon. It turns out that, with the tuning of the relative operating characteristic (ROC) curve between hit rate and false alarm rate, the LIDAR-based turbulence intensity measurement performs better than the anemometer-based estimation of WTWS for turbulence intensity at moderate level or above. On the other hand, the radar-based measurement does not perform as well when compared with WTWS. By combining LIDAR- and radar-based measurements, the performance is slightly better than WTWS, mainly as a result of contribution from LIDAR-based measurement. As a result, the LIDAR-based turbulence intensity measurement could be used to replace anemometer-based estimate for non-rainy weather conditions. Further enhancements of radar-based turbulence intensity measurement in rain would be necessary.
机译:香港天文台(HKO)通过风切变和湍流预警系统(WTWS)为香港国际机场(HKIA)提供低水平的湍流预警服务。在WTWS中,基于在机场开放之前表面风速计数据与来自研究飞机的湍流数据之间建立的相关方程,估算了沿机场飞行路径的湍流强度。每天无法提供研究飞机的数据。诸如多普勒光探测与测距(LIDAR)和雷达之类的遥感气象仪器可用于直接测量跑道走廊上的湍流强度。本文基于423架商用喷气机对典型的地形引起的湍流和台风的实际湍流强度测量,研究了基于LIDAR和雷达的湍流强度数据的性能。事实证明,通过对命中率和误报率之间的相对运行特性(ROC)曲线进行调整,对于中等或更高水平的湍流强度,基于LIDAR的湍流强度测量的性能优于基于风速计的WTWS估计。另一方面,与WTWS相比,基于雷达的测量效果不佳。通过结合基于LIDAR和雷达的测量,其性能比WTWS稍好,这主要是基于LIDAR的测量所做出的贡献。结果,基于LIDAR的湍流强度测量可用于代替基于非风雨天气的基于风速计的估计。雨中基于雷达的湍流强度测量的进一步增强将是必要的。

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