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Article

Study on Characteristics and Numerical Simulation of a Convective Low-Level Wind Shear Event at Xining Airport

1
China Meteorological Administration Key Laboratory for Aviation Meteorology, Civil Aviation Flight University of China, Guanghan 618307, China
2
College of Aviation Meteorology, Civil Aviation Flight University of China, Guanghan 618307, China
3
Hebei Provincial Meteorological Observatory, Shijiazhuang 050000, China
4
College of Electronic Engineering, Chengdu University of Information Technology, Chengdu 610225, China
5
College of Meteorological Observation, Chengdu University of Information Technology, Chengdu 610225, China
*
Authors to whom correspondence should be addressed.
Atmosphere 2025, 16(10), 1137; https://doi.org/10.3390/atmos16101137
Submission received: 11 August 2025 / Revised: 22 September 2025 / Accepted: 23 September 2025 / Published: 27 September 2025
(This article belongs to the Section Meteorology)

Abstract

Low-level wind shear (LLWS) is a critical issue in aviation meteorology, posing serious risks to flight safety—especially at plateau airports with high elevation and complex terrain. This study investigates a convective wind shear event at Xining Airport on 29 May 2021. Multi-source observations—including the Doppler Wind Lidar (DWL), the Doppler weather radar (DWR), reanalysis datasets, and automated weather observation systems (AWOS)—were integrated to examine the event’s fine-scale structure and temporal evolution. High-resolution simulations were conducted using the Large Eddy Simulation (LES) framework within the Weather Research and Forecasting (WRF) model. Results indicate that the formation of this wind shear was jointly triggered by convective downdrafts and the gust front. A northwesterly flow with peak wind speeds of 18 m/s intruded eastward across the runway, generating multiple radial velocity couplets on the eastern side, closely associated with mesoscale convergence and divergence. A vertical shear layer developed around 700 m above ground level, and the critical wind shear during aircraft go-around was linked to two convergence zones east of the runway. The event lasted about 30 min, producing abrupt changes in wind direction and vertical velocity, potentially causing flight path deviation and landing offset. Analysis of horizontal, vertical, and glide-path wind fields reveals the spatiotemporal evolution of the wind shear and its impact on aviation safety. The WRF-LES accurately captured key features such as wind shifts, speed surges, and vertical disturbances, with strong agreement to observations. The integration of multi-source observations with WRF-LES improves the accuracy and timeliness of wind shear detection and warning, providing valuable scientific support for enhancing safety at plateau airports.
Keywords: plateau airport; low-level wind shear; Doppler wind LiDAR; large eddy simulation plateau airport; low-level wind shear; Doppler wind LiDAR; large eddy simulation

Share and Cite

MDPI and ACS Style

Gu, J.; Qiu, Y.; Zhang, S.; Yang, X.; Luo, S.; Zheng, J. Study on Characteristics and Numerical Simulation of a Convective Low-Level Wind Shear Event at Xining Airport. Atmosphere 2025, 16, 1137. https://doi.org/10.3390/atmos16101137

AMA Style

Gu J, Qiu Y, Zhang S, Yang X, Luo S, Zheng J. Study on Characteristics and Numerical Simulation of a Convective Low-Level Wind Shear Event at Xining Airport. Atmosphere. 2025; 16(10):1137. https://doi.org/10.3390/atmos16101137

Chicago/Turabian Style

Gu, Juan, Yuting Qiu, Shan Zhang, Xinlin Yang, Shi Luo, and Jiafeng Zheng. 2025. "Study on Characteristics and Numerical Simulation of a Convective Low-Level Wind Shear Event at Xining Airport" Atmosphere 16, no. 10: 1137. https://doi.org/10.3390/atmos16101137

APA Style

Gu, J., Qiu, Y., Zhang, S., Yang, X., Luo, S., & Zheng, J. (2025). Study on Characteristics and Numerical Simulation of a Convective Low-Level Wind Shear Event at Xining Airport. Atmosphere, 16(10), 1137. https://doi.org/10.3390/atmos16101137

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