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the world's largest floating wind power platform was selected as a typical case of dual-carbon technology innovation in 2024

2024-09-21

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on september 10, the world's largest floating wind power platform "mingyang tiancheng", developed by a chinese company, was successfully selected as a "typical case of dual-carbon technological innovation" jointly initiated by china energy news and china energy economics research institute. so far, the wind power platform has completed offshore installation and will be connected to the grid for power generation after commissioning. after the platform is put into use, it is expected to generate an average of about 54 million kwh of electricity per year, which can meet the daily electricity needs of 30,000 families of three for one year.
according to reports, the "mingyang tiancheng" is currently the world's largest floating wind power platform, and has achieved many world firsts. its two towers are arranged in a "v" shape and carry two 8.3 mw offshore wind turbines with a total capacity of 16.6 mw, which can be used in a wide range of sea areas around the world with a water depth of more than 35 meters. its floating foundation is the first in the world to be made of ultra-high performance concrete materials with a compressive capacity of more than 115 mpa, and its strength is about 4 times that of ordinary concrete. the "fiberglass shell + xps core material + protective coating material" solution used in the buoy is also a world first, breaking through the limitations of traditional buoys using pure steel structures or steel-concrete structures. in addition, the design of the airfoil double towers, double main engines, double wind rotors, and the application of the cable system are all world firsts.
under the impact of the recent super typhoon "makar", the "ming yang tian cheng" also demonstrated the strong typhoon resistance of chinese wind turbines. the ingenious design of the long elliptical tower and single-point mooring system made the "ming yang tian cheng" very stable during the typhoon, and the acceleration of the movement was stable within 0.13g (1g = 9.8m/s²), which also means that this floating wind turbine has reached the stable state of a fixed wind turbine.
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