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6857万千瓦!负荷创新高!安徽“源网荷储”同发力迎战酷暑
Xin Hua Wang·2025-08-25 01:02

Group 1 - The summer heat in Anhui has posed significant challenges for power supply, with the peak load reaching 68.57 million kilowatts on August 21, a 7.92% increase from last year [1] - The Anhui provincial government is implementing a coordinated approach involving "source-network-load-storage" to ensure stable power supply by enhancing power generation, improving grid efficiency, and optimizing load and storage [1] - The China Railway Shanghai Bureau has facilitated the transportation of 3.4 million tons of thermal coal since July to support power generation during the summer [1] Group 2 - The Huaihe Energy Panji Power Plant operates four 660 MW ultra-supercritical clean coal-fired units, generating approximately 13.2 billion kilowatt-hours annually, which is crucial for regional energy supply [2] - Anhui has transitioned from a traditional power-exporting province to one with an annual electricity consumption exceeding 350 billion kilowatt-hours, relying on external power sources [2] - The use of drones equipped with AI for power line inspections has significantly improved efficiency, completing inspections five times faster than traditional methods and reducing fault rates by 40% [2] Group 3 - To alleviate supply-demand conflicts, Anhui has optimized its peak and valley electricity pricing policy, encouraging industrial users to increase midday electricity usage [3] - The "Energy Saving Response, Beautiful Anhui Together" initiative rewards residential users for saving electricity, with 310 million users participating and saving 248 million kilowatt-hours [3] - A user-side energy storage station in Chuzhou has been operational for nearly two months, charging 216,000 kilowatt-hours and discharging 184,400 kilowatt-hours, generating over 110,000 yuan in economic benefits [3] Group 4 - The Anhui Provincial Energy Bureau emphasizes the importance of coordinated efforts in "source-network-load-storage" to ensure reliable power supply during peak summer demand [4]