Journal of Infrared and Millimeter Waves, Volume. 39, Issue 4, 491(2020)
[4] Shun C M, Chan P W. Applications of an infrared Doppler lidar in detection of wind shear. Journal of Atmospheric and Oceanic Technology, 25, 637-655(2008).
[7] Fujita T T, Caracena F. An analysis of three weather-related aircraft accidents. Bulletin of the American Meteorological Society, 58, 1164-1181(1977).
[10] Zhang H, Wu S, Wang Q. Airport low-level wind shear lidar observation at Beijing Capital International Airport. Infrared Physics & Technology, 96, 113-122(2019).
[11] Wu S, Zhai X, Liu B. Aircraft wake vortex and turbulence measurement under near-ground effect using coherent Doppler lidar. Optical Society of America, 27, 1142(2019).
[12] Zhai X, Wu S, Liu B. Shipborne wind measurement and motion-induced error correction of a coherent Doppler lidar over the Yellow Sea in 2014. Atmospheric Measurement Techniques, 11, 1313-1331(2018).
[14] Zhai X, Wu S, Liu B. Doppler lidar investigation of wind turbine wake characteristics and atmospheric turbulence under different surface roughness. Optical Society of America, 25(2017).
[15] Wu S, Liu B, Liu J. Wind turbine wake visualization and characteristics analysis by Doppler lidar. Optical Society of America, 24(2016).
[16] Shun C M, Lau S Y. Implementation of a Doppler light detection and ranging ( LIDAR ) system for the Hong Kong International Airport.
[17] Choy B L, Lee O S M, Shun C M. Prototype automatic LIDAR-based wind shear detection algorithms(2004).
[18] Chan P W, Hon K K, Shin D K. Combined use of headwind ramps and gradients based on LIDAR data in the alerting of low-level windshear/turbulence. Meteorologische Zeitschrift, 20, 661-670(2011).
[19] Chan P W. Application of LIDAR-based F-factor in windshear alerting. Meteorologische Zeitschrift, 21, 193-204(2012).
[20] Byrd G P, Proctor F H, Bowles R L. Evaluation of a technique to quantify microburst windshear hazard potential to aircraft, 2, 689-694(1990).
[21] Vicroy D D. Microburst vertical wind estimation from horizontal wind measurements(1994).
[22] Hinton A D. Airborne derivation of microburst alerts from ground-based Terminal Doppler Weather Radar information: A flight evaluation(1993).
[23] Shun C M, Cheng C M, Lee O. LIDAR observations of terrain-induced flow and its application in airport wind shear monitoring, 19-23(2003).
[24] Chan P W. An event of tail strike of an aircraft due to terrain-induced wind shear at the Hong Kong International Airport. Meteorological Applications, 19, 325-333(2012).
[25] Szeto K, Chan P W. High resolution numerical modelling of windshear episodes at the Hong Kong International Airport(2006).
[26] Chan P W, Hon K K. Observation and numerical simulation of terrain-induced windshear at the Hong Kong International Airport in a planetary boundary layer without temperature inversions. Advances in Meteorology, 1-9(2016).
[27] Chan P W, Shao A M. Depiction of complex airflow near Hong Kong International Airport using a Doppler LIDAR with a two-dimensional wind retrieval technique. Meteorologische Zeitschrift, 16, 491-504(2007).
[28] Strauch R G, Merritt D A, Moran K P. The Colorado wind-profiling network. Journal of Atmospheric and Oceanic Technology, 1, 37-49(1984).
[29] Barthelmie R J, Pryor S C. Automated wind turbine wake characterization in complex terrain. Atmospheric Measurement Techniques, 12, 3463-3484(2019).
[30] Smalikho I, Köpp F, Rahm S. Measurement of atmospheric turbulence by 2-μm Doppler lidar. Journal of Atmospheric and Oceanic Technology, 22, 1733-1747(2005).
[31] Manual on low-level wind shear(2005).
[32] Nieuwpoort A M H, Gooden J H M, De prins J L. Wind criteria due to obstacles at and around airports(2010).
Get Citation
Copy Citation Text
Xiao-Ying LIU, Song-Hua WU, Hong-Wei ZHANG, Zhi-Qiang HE, Jian-Jun ZHANG, Xiao-Ye WANG, Xiao-Min CHEN.
Category: Remote Sensing Technology and Application
Received: Oct. 30, 2019
Accepted: --
Published Online: Sep. 17, 2020
The Author Email: Song-Hua WU (wush@ouc.edu.cn)