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雅砻江流域水风光一体化基地
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媒体报道丨国际大坝委员会代表调研雅砻江流域水风光一体化开发
国家能源局· 2025-05-30 06:10
Core Viewpoint - The Yarlung Tsangpo River basin's integrated development of hydropower and wind-solar energy is a significant example of clean energy innovation, showcasing China's capabilities in large-scale renewable energy projects [1][2][3] Group 1: Project Overview - The Yarlung Tsangpo River basin is recognized as one of China's nine major clean energy bases in the "14th Five-Year Plan" and is the country's first integrated hydropower and wind-solar demonstration base [1] - The current phase of the Yarlung Tsangpo River basin's integrated energy base plans to install 78 million kilowatts, with four project clusters planned for completion by 2035, aiming to become the world's largest green clean renewable energy base [3] Group 2: Technical Insights - The Jinxing Hydropower Station, the largest in the Yarlung Tsangpo River basin, has a total installed capacity of 8.4 million kilowatts and has achieved 20 world firsts, 20 domestic firsts, and 23 industry innovations [2] - The integration of hydropower with wind and solar energy is supported by the natural seasonal complementarity of these resources, with large hydropower stations providing essential regulation capabilities for the integrated development [2][3] Group 3: International Recognition - International experts, including the president of the International Commission on Large Dams, have praised the Yarlung Tsangpo River basin's integrated development as a valuable model for other countries, highlighting its potential as a global solution for renewable energy integration [2] - The project has garnered significant attention for its engineering complexity and efficiency, showcasing China's advanced capabilities in design and construction within the energy sector [2]
媒体报道丨院士专家建议加快雅砻江流域水风光一体化基地开发运营 为全世界绿色低碳转型做示范
国家能源局· 2025-05-20 06:32
Core Viewpoint - The Yalong River Basin's integrated development of hydropower, wind, and solar energy is a key initiative in China's "14th Five-Year Plan," aiming to serve as a model for global green and low-carbon transformation [3][8]. Group 1: Project Overview - The Yalong River Basin is recognized as China's first integrated hydropower and renewable energy demonstration base, with a planned installed capacity of 78 million kilowatts [3][8]. - Currently, the base has completed 7 large hydropower stations and 3 major reservoirs, contributing nearly 21 million kilowatts of clean energy capacity and an annual power generation of approximately 100 billion kilowatt-hours [8][9]. Group 2: Economic Impact - The development of the Yalong River Basin is expected to generate static investments of about 350 billion yuan and drive a trillion-level industrial development, significantly benefiting the economy of Sichuan Province [8][9]. - The project is projected to create over 150,000 direct jobs and 160,000 indirect jobs during peak construction, with an annual tax contribution exceeding 10 billion yuan once operational [9]. Group 3: Technological Advancements - The Yalong River Basin has made significant strides in digitalization and intelligent applications, with projects like the Two Rivers Hydropower Station utilizing intelligent construction technologies [5][7]. - The integration of AI technology in the Kela Solar Power Station has led to innovative smart operation and maintenance practices [5]. Group 4: Strategic Importance - The Yalong River is noted for its excellent regulation capabilities, making it a crucial asset for large-scale development of wind and solar energy [11]. - The integrated development model is seen as vital for ensuring national energy security and promoting high-quality development of renewable energy [11][13]. Group 5: Recommendations for Development - Experts suggest a collaborative approach to accelerate the integrated development and operation of the Yalong River Basin, emphasizing the need for a "5+1" model that includes resource integration and national policy support [14][15]. - The focus on digitalization and smart technologies is recommended to enhance the efficiency and effectiveness of resource utilization in the basin [15][16].