线性菲涅尔光热综合能源
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全国最大!“光热+光伏”协同运行新模式正式开启 电网发展向“新”向“绿”
Yang Shi Wang· 2025-09-19 03:57
Core Insights - The project marks the official launch of a new collaborative operation model of "solar thermal + photovoltaic" energy, enhancing the grid's capacity to accept renewable energy [1][5] Project Overview - The project, located in Hami City, Xinjiang, has a total installed capacity of 1 million kilowatts, consisting of a 100,000-kilowatt solar thermal storage power station and a 900,000-kilowatt photovoltaic power station [3] - The solar thermal component utilizes 260,000 linearly arranged mirrors to concentrate sunlight and heat molten salt for energy storage, achieving up to 8 hours of energy storage [3] Operational Synergy - The solar thermal power station's energy storage and peak regulation capabilities complement the photovoltaic power station, providing a seamless power supply during nighttime or cloudy periods, ensuring 24-hour stable output [5] - After full capacity grid connection, the solar thermal storage power station will serve as a fundamental regulating power source, working in tandem with the photovoltaic station to create a multi-energy complementary clean energy base [7] Environmental Impact - The project is expected to generate approximately 2.067 billion kilowatt-hours of clean electricity annually, leading to a reduction of over 1.63 million tons of carbon dioxide emissions [7]
新模式开启 新疆哈密百万千瓦“光热+光伏”项目全容量并网
Yang Shi Xin Wen· 2025-09-19 01:56
Core Insights - The largest linear Fresnel solar thermal integrated energy demonstration project in China, the Three Gorges Group's Hami 1 million kilowatt "solar thermal + photovoltaic" project, has achieved full capacity grid connection, marking the official launch of a new collaborative operation model for "solar thermal + photovoltaic" [1] - The project is located in Hami City, Xinjiang, with a total installed capacity of 1 million kilowatts, consisting of a 100,000-kilowatt solar thermal storage power station and a 900,000-kilowatt photovoltaic power station [1] - The solar thermal component utilizes 260,000 linearly arranged mirrors to concentrate sunlight, heating molten salt for energy storage, capable of storing energy for up to 8 hours, thus enabling efficient conversion and stable utilization of solar energy [1] Project Details - The project allows the solar thermal power station to leverage its energy storage peak regulation capabilities in deep complementarity with the 900,000-kilowatt photovoltaic power station [1] - During the day, photovoltaic power generation meets the basic load of the grid; at night or during rainy periods, the thermal storage system seamlessly provides power, achieving 24-hour stable output [1] - After full capacity grid connection, the solar thermal storage power station can fully utilize its role as a basic regulating power source, working in tandem with the photovoltaic station to form a clean energy base with multi-energy complementarity [1] Environmental Impact - The project is expected to produce approximately 2.067 billion kilowatt-hours of clean electricity annually, resulting in a reduction of over 1.63 million tons of carbon dioxide emissions [1]
哈密百万千瓦“光热+光伏”项目全容量并网发电
Xin Lang Cai Jing· 2025-09-18 06:57
Core Insights - The largest "linear Fresnel" solar thermal integrated energy demonstration project in China, the Three Gorges Group's Hami 1 million kilowatt "solar thermal + photovoltaic" project, has achieved full capacity grid-connected power generation, marking the official launch of a new collaborative operation model for "solar thermal + photovoltaic" [1] Project Overview - The project is located in Hami City, Xinjiang, with a total installed capacity of 1 million kilowatts, consisting of a 100,000 kilowatt solar thermal storage power station and a 900,000 kilowatt photovoltaic power station [1] - The solar thermal component utilizes 260,000 linearly arranged mirrors to concentrate sunlight, heating molten salt to store thermal energy [1] - The entire heat collection system can achieve up to 8 hours of energy storage, effectively enabling high-efficiency conversion and stable utilization of solar energy [1]