雨水情监测预报体系
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水利部:去年通过调度大中型水库拦蓄洪水避免306万人次转移
Xin Lang Cai Jing· 2026-01-09 04:19
Core Insights - The Ministry of Water Resources successfully managed 15,300 water engineering emergencies after the flood season in 2025, preventing the displacement of 3.06 million people by effectively regulating reservoirs to store 120.2 billion cubic meters of floodwater [1][3]. Group 1: Flood Management Strategies - The Ministry of Water Resources set clear goals for 2025, focusing on preventing casualties, dam failures, breaches in important levees, and impacts on critical infrastructure [1]. - A comprehensive deployment of flood prevention measures was initiated at the beginning of the year, emphasizing the safety of reservoirs and mountain flood disaster prevention [1][2]. - Daily consultations were held 233 times during the flood season, with a structured response mechanism activated 41 times to guide local authorities in implementing flood defense measures [2]. Group 2: Monitoring and Early Warning Systems - The rainwater monitoring and forecasting system played a crucial role, with 150,940 flood forecasts and 4,835 early warnings for small and medium rivers issued in 2025 [2]. - A total of 22.1 billion text messages were sent to flood responsibility holders and the public, enhancing preparedness for flood risks [2]. Group 3: Engineering and Resource Management - A total of 22,100 operational directives were issued, leading to the storage of 120.2 billion cubic meters of floodwater across 6,894 large and medium-sized reservoirs [3]. - The flood management efforts resulted in the reduction of urban flooding incidents by 1,082 and saved 8.3 million acres of farmland from flooding [3]. - Key reservoirs, such as the Three Gorges and Danjiangkou, successfully reached their normal water levels, ensuring adequate water supply for winter and spring [3].
进入“七下八上”关键期,水旱灾害防御如何部署
Xin Jing Bao· 2025-07-17 08:58
Core Viewpoint - The article discusses the critical flood prevention period in China, highlighting the challenges posed by extreme weather events and the measures taken by the Ministry of Water Resources to ensure safety and effective disaster response during this time [1][2][4]. Group 1: Flood Prevention Measures - The flood prevention period, known as "Seven Down, Eight Up," is characterized by complex and severe flood conditions, with early onset of flooding and extreme droughts in various regions [1][2]. - The Ministry of Water Resources has established a comprehensive flood disaster prevention system consisting of three main components: rainwater monitoring and forecasting, flood disaster defense work, and flood control engineering systems [1][4]. Group 2: Monitoring and Forecasting Systems - A total of 101 rain monitoring radars have been installed across 24 provinces, significantly enhancing the ability to monitor and forecast rainfall [3]. - The rainwater monitoring and forecasting system has been successfully applied during recent extreme weather events, providing timely warnings that facilitated the evacuation of over 100,000 people during severe flooding in Guizhou Province [5][3]. Group 3: Responsibility and Coordination - The Ministry of Water Resources has published a list of 2,792 flood prevention responsibility holders to ensure accountability and effective disaster management [4]. - 23 provinces have established flood disaster defense centers to enhance decision-making support and coordination during flood events [5]. Group 4: Engineering and Infrastructure - As of the end of 2024, there are 318,000 kilometers of levees in China, with 77,000 kilometers classified as important levees [6]. - The Ministry has completed the spatial coordinate mapping of 291,000 kilometers of levees, which will aid in real-time monitoring and decision-making for flood prevention [6]. Group 5: Flood Control Effectiveness - During the response to Typhoon "Butterfly," major reservoirs in the Pearl River, Yangtze River, and Taihu Lake basins were utilized to store 6.67 billion cubic meters of floodwater, demonstrating the effectiveness of the flood control engineering system [7].