无线电探空仪
气象学
环境科学
风速计
数值天气预报
湍流
风速
大气模式
一致性(知识库)
时间分辨率
计算流体力学
计算机模拟
天气研究与预报模式
天气预报
模型输出统计
晴空湍流
遥感
工作(物理)
计算机科学
天气预报
仿真建模
体积热力学
侧风
数据同化
作者
Ming Chun Lam,Wai Hung Leung,Ka Wai Lo,Kai Kwong Lai,Pak Wai CHAN,Jingyu He,Qiu Sheng Li
出处
期刊:Atmosphere
[Multidisciplinary Digital Publishing Institute]
日期:2026-01-20
卷期号:17 (1): 107-107
标识
DOI:10.3390/atmos17010107
摘要
Meteorological measurements from Unmanned Aircraft Systems (UASs) increase the volume of observations available for validating and improving high-spatiotemporal-resolution models. Accurate model forecasts for UAS operations are essential to the successful development of the low-altitude economy (LAE). In this study, two UAS test flights were analyzed to assess the consistency between UAS measurements and Regional Atmospheric Modeling System model outputs, thereby evaluating model forecast skill. UAS measurements were compared with ground-based anemometer and radiosonde observations to meet the World Meteorological Organization observational requirements at both the Threshold and Goal levels. Model-forecast turbulence exhibited strong agreement with atmospheric turbulence derived from high-frequency UAS wind data. The numerical weather prediction model at high spatial and temporal resolution is found to have sufficiently accurate forecasts to support UAS operation. A computational fluid dynamics model was also tested for high-resolution wind and turbulence forecasting; however, it did not yield improvements over the meteorological model. This work represents the first study of its kind for LAE applications in Hong Kong, and further statistical analyses are planned.
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