I. Basic Information
Project Subject: Institute of Atmospheric Physics, Chinese Academy of Sciences
Category: Science and Education Infrastructure of the 13th Five-Year Plan of the Chinese Academy of Sciences
Location: East Area of Huairou Science City
Area: 11.65 mu
Building area: 7953 m2
Total investment: 113.96 million yuan
Subject orientation: Earth System Science
Real-life View of Interdisciplinary Research Platform for Atmospheric Environment and Physical Chemistry in Beijing, Tianjin and Hebei
II. Main Contents
Project introduction: By leveraging the interdisciplinary expertise of atmospheric chemistry and atmospheric physics, this platform integrates ground-based observations and radar vertical observation systems to establish a world-leading centre for the physical and chemical detection and analysis of the atmospheric boundary layer. This will enable integrated sky-ground observation of the physical and chemical structure of the atmospheric boundary layer. This platform will establish a series of three-dimensional detection standards and demonstration systems for the physical and chemical structure of the atmospheric boundary layer. It will also reveal the sources and formation mechanisms of atmospheric complex pollution in the Beijing-Tianjin-Hebei region, thereby providing comprehensive support for the scientific prevention and control of atmospheric complex pollution in the Beijing-Tianjin-Hebei region.
This platform will be the first international standard for atmospheric vertical flux observation. It will facilitate research into the turbulent structure and energy exchange mechanism of complex underlying surfaces, thereby revealing various key physical and chemical processes under the surfaces of complex cities. It will also provide insights into the material and energy exchange mechanism between the boundary layer and the free atmosphere.
The platform is comprised of three primary systems: a three-dimensional detection system for the physical and chemical structure of the atmospheric boundary layer, an observation system for atmospheric environmental capacity and energy exchange, and an experimental analysis and research system for atmospheric environment.