-+ 0.00%
-+ 0.00%
-+ 0.00%

The reporter learned from the China Meteorological Administration on the 9th that during the typhoon “White Dolphin” campaign, the precipitation measurement radar carried by Fengyun-3 G-Star played a key role in typhoon monitoring practices. It accurately captured the fine three-dimensional precipitation structure of the “White Dolphin”, showing that China's integrated precipitation system of heaven and earth has matured and played a role in meteorological disaster prevention and mitigation. Zhang Peng, director of the Meteorological Exploration Center of the China Meteorological Administration, said that during the “White Dolphin” campaign, Fengyun-3 G-Star clearly captured the complete structure of the spiral rain belt on the periphery of the typhoon, accurately detected that the strongest instantaneous precipitation in the typhoon system could reach 100 mm per hour, and the maximum height of the peak of the storm echo was about 10 kilometers. It completely analyzed core details such as rainfall intensity intensity and spatial distribution within the typhoon to provide high-precision, three-dimensional key observation support for typhoon intensity assessment, path forecasting, short-term warning, and disaster prevention and mitigation decisions.

Zhitongcaijing·09/09/2026 14:57:06
Listen to the news
The reporter learned from the China Meteorological Administration on the 9th that during the typhoon “White Dolphin” campaign, the precipitation measurement radar carried by Fengyun-3 G-Star played a key role in typhoon monitoring practices. It accurately captured the fine three-dimensional precipitation structure of the “White Dolphin”, showing that China's integrated precipitation system of heaven and earth has matured and played a role in meteorological disaster prevention and mitigation. Zhang Peng, director of the Meteorological Exploration Center of the China Meteorological Administration, said that during the “White Dolphin” campaign, Fengyun-3 G-Star clearly captured the complete structure of the spiral rain belt on the periphery of the typhoon, accurately detected that the strongest instantaneous precipitation in the typhoon system could reach 100 mm per hour, and the maximum height of the peak of the storm echo was about 10 kilometers. It completely analyzed core details such as rainfall intensity intensity and spatial distribution within the typhoon to provide high-precision, three-dimensional key observation support for typhoon intensity assessment, path forecasting, short-term warning, and disaster prevention and mitigation decisions.