###
气象:2025,51(11):1455-1476
本文二维码信息
码上扫一扫!
低空经济气象前沿科技问题研究进展与展望
郭建平,张玮,周博闻,严超,张雪琳,孙玉萍,邓威龙,陈田萌,杨红龙,邱宗旭,黎志波,陶法,梁海河,张朝林
(中国气象科学研究院 灾害天气科学与技术全国重点实验室/专项气象保障技术研究中心,北京 100081; 南京大学大气科学学院,南京 210023; 北京城市气象研究院,北京 100089;中山大学大气科学学院,珠海 519082; 深圳市国家气候观象台,深圳 518022; 江西省气象探测中心,南昌 330096; 中国气象局气象探测中心,北京 100081; 中国气象局气象发展与规划院,北京 100081)
Progress and Prospect of Research on the Key Frontier Scientific and Technological Issues in Low-Altitude Economy Meteorology
GUO Jianping,ZHANG Wei,ZHOU Bowen,YAN Chao,ZHANG Xuelin,SUN Yuping,DENG Weilong,CHEN Tianmeng,YANG Honglong,QIU Zongxu,LI Zhibo,TAO Fa,LIANG Haihe,ZHANG Chaolin
(State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081; School of Atmospheric Sciences, Nanjing University, Nanjing 210023; Institute of Urban Meteorology, CMA, Beijing 100089; School of Atmospheric Sciences, Sun Yat-Sen University, Zhuhai 519082; Shenzhen National Climate Observatory, Shenzhen 518022; Jiangxi Meteorological Observation Center, Nanchang 330096; CMA Meteorological Observation Centre, Beijing 100081; CMA Meteorological Development and Planning Institute, Beijing 100081)
摘要
图/表
参考文献
相似文献
本文已被:浏览 11次   下载 17
投稿时间:2025-06-25    修订日期:2025-10-12
中文摘要: 低空经济作为新质生产力代表,其发展依赖于非管制空域内的飞行活动,该空域主要对应大气边界层下层,是湍流和风切变等航空危险(简称航危)天气的高发区域。气象条件与通信、导航、监视系统共同构成低空经济高质量发展的关键基础支撑。然而,该空域的高时空分辨率航危天气监测预警能力仍严重不足,对实现高效、安全的低空飞行构成严峻挑战。为此,本文系统梳理了低空经济气象科技领域的国内外研究进展,剖析了边界层湍流相干结构、低空风切变、湍流与微下击暴流监测预警以及大涡模拟等关键科技领域所面临的核心挑战。进而从近中性边界层湍流新理论、湿边界层过程、面向低空航空器安全飞行的气象智能感知装备研发、人工智能赋能的低空航危天气预警、智能计算流体力学模型研发以及低空气象条件与无人机路径规划协同优化等角度,对低空经济气象领域若干前沿科技问题进行了展望。旨在深化低空航危天气与低空飞行器相互作用机理的认知,为提升低空航危天气的高精度智能感知与快速预报预警能力提供理论依据与技术路径,从而为低空经济的安全与可持续发展提供关键气象科技支撑。
Abstract:As an emerging form of new quality productive forces, the development of low-altitude economy relies heavily on flight operations within non-controlled airspace categories, such as Class G and Class W. This airspace predominantly resides in the lower atmospheric boundary layer, an area highly prones to aviation hazardous weather phenomena like turbulence and wind shear. Meteorological conditions, together with communication, navigation, and surveillance systems, constitute the critical foundational support for the high-quality development of the low-altitude economy. However, there remains a severe deficiency in the high spatiotemporal resolution monitoring and early warning capabilities for aviation hazardous weather within this airspace, posing significant challenges to achieving efficient and safe low-altitude flight operations. To address this, this paper systematically reviews domestic and international research progresses in low-altitude economy meteorology and analyzes the key core challenges currently faced in key scientific and technological domains, including coherent structures in boundary layer turbulence, low-altitude wind shear, monitoring and early warning of turbulence and microbursts, and large eddy simulation. Furthermore, this paper explores several frontier scientific and technological issues in low-altitude meteorology, which include new theoretical frameworks for near-neutral boundary layer turbulence, moist boundary layer processes, development of intelligent meteorological sensing equipment for low-altitude aircraft safety, early warning powered by artificial intelligence for low-altitude aviation hazardous weather, development of intelligent computational fluid dynamics models, and the synergistic optimization of low-altitude meteorological condition and unmanned aerial vehicle path planning. Overall, this study aims to deepen the understanding of the underlying mechanisms governing the interaction between low-altitude aviation hazardous weather and aircraft, and seeks to provide theoretical foundations and technical pathways for enhancing high-precision intelligent sensing, as well as rapid forecasting and early warning capabilities for low-altitude aviation hazardous weather. Ultimately, this work endeavors to deliver crucial meteorological science and technology support for the safety and sustainable development of the low-altitude economy.
文章编号:     中图分类号:    文献标志码:
基金项目:国家重点研发计划(2024YFC3013001)、国家自然科学基金杰出青年科学基金项目(42325501)和中国气象科学研究院基本科研业务经费(2024Z003)共同资助
Author NameAffiliation
GUO Jianping State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081 
ZHANG Wei State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081 
ZHOU Bowen School of Atmospheric Sciences, Nanjing University, Nanjing 210023 
YAN Chao Institute of Urban Meteorology, CMA, Beijing 100089 
ZHANG Xuelin School of Atmospheric Sciences, Sun Yat-Sen University, Zhuhai 519082 
SUN Yuping State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081 
DENG Weilong State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081 
CHEN Tianmeng State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081 
YANG Honglong Shenzhen National Climate Observatory, Shenzhen 518022 
QIU Zongxu Shenzhen National Climate Observatory, Shenzhen 518022 
LI Zhibo Jiangxi Meteorological Observation Center, Nanchang 330096 
TAO Fa CMA Meteorological Observation Centre, Beijing 100081 
LIANG Haihe CMA Meteorological Development and Planning Institute, Beijing 100081 
ZHANG Chaolin State Key Laboratory of Severe Weather Meteorological Science and Technology & Specialized Meteorological Support Technology Research Center, Chinese Academy of Meteorological Sciences, Beijing 100081 
引用文本:
郭建平,张玮,周博闻,严超,张雪琳,孙玉萍,邓威龙,陈田萌,杨红龙,邱宗旭,黎志波,陶法,梁海河,张朝林,2025.低空经济气象前沿科技问题研究进展与展望[J].气象,51(11):1455-1476.
GUO Jianping,ZHANG Wei,ZHOU Bowen,YAN Chao,ZHANG Xuelin,SUN Yuping,DENG Weilong,CHEN Tianmeng,YANG Honglong,QIU Zongxu,LI Zhibo,TAO Fa,LIANG Haihe,ZHANG Chaolin,2025.Progress and Prospect of Research on the Key Frontier Scientific and Technological Issues in Low-Altitude Economy Meteorology[J].Meteor Mon,51(11):1455-1476.