超超临界二次再热清洁高效燃煤发电机组

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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]
安徽:“源网荷储”同发力 迎战酷暑保供电
Zhong Guo Jin Rong Xin Xi Wang· 2025-08-22 12:57
Core Insights - The article highlights the challenges faced by the Anhui province in ensuring stable electricity supply during the ongoing high-temperature summer, with record electricity load reaching 68.57 million kilowatts, a 7.92% increase from last year [1][5]. Group 1: Electricity Supply and Demand - Anhui province is implementing a "source-network-load-storage" collaborative approach to enhance electricity supply stability, focusing on strengthening power generation, improving grid efficiency, and optimizing load and storage [1][8]. - The province has transitioned from a traditional power-exporting region to a major power-consuming province, with annual electricity consumption exceeding 350 billion kilowatt-hours [5]. Group 2: Coal Supply and Transportation - Coal remains a critical component for energy supply, with the China Railway Shanghai Bureau Group ensuring smooth transportation of coal to power plants, having transported 3.4 million tons of coal since July [1][3]. - The Huainan West Station serves as a coal distribution hub, employing flexible work arrangements to enhance vehicle turnover efficiency amid high temperatures [3]. Group 3: Technological Innovations - The use of drones equipped with AI for power line inspections has significantly improved efficiency, completing inspections five times faster than traditional methods, with 280 kilometers inspected and 162 hazards eliminated since summer began [5][7]. - The implementation of a user-side energy storage station has allowed for economic benefits through peak and valley electricity price differences, generating over 110,000 yuan for a local company [7]. Group 4: Demand Response Initiatives - The province has optimized its peak and valley pricing policy to encourage industrial users to shift electricity usage to off-peak hours, alleviating pressure during peak times [7]. - A "power-saving response" initiative has engaged 3.1 million users, collectively saving 2.48 million kilowatt-hours, effectively reducing peak load on the grid [7][8].