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2021 Summer Universiade Stadium Centre

2021-10-20

The project area of the 2021 Summer Universiade Stadium Centre is 29000 square meters, using ETFE and PTFE membrane materials, and it took 118 days to complete. The project includes the main stadium, gymnasium, and swimming pool, as well as the National Fitness Plaza, the Sports Comprehensive Service Area, and the News Command Center. And other supporting facilities.

Looking down from a high altitude, it is presented in the shape of a "flying saucer", like a white pearl inlaid in a piece of green, shining brightly, it is one of the few round stadiums in the country. As a symbol of ancient Shu culture, the "sun bird" pattern is suspended on the roof of the stadium, implying the perfect integration of tradition and modernity, and embodies the urban development concept of inheritance and openness, interdependence and mutual promotion.


The architectural form of the 2021 Summer Universiade Stadium Centre takes the shape of a flying saucer, and the overall shape is arc, which means that it is different from the ordinary Fangzheng building, which is a special-shaped structure building. The sloping beams and slabs in the entire building account for more than 50%.

Therefore, controlling the construction accuracy during the construction process is the key to the entire project quality management. In the process of inclined beam construction, independent column construction and steel embedded parts construction, in order to ensure the overall control of the inclined beam deviation between 5 mm and 10 mm, the total height error of the 21-meter single-construction independent column is controlled at 9/10,000. The embedded parts of steel structure can be embedded accurately, and each process must undergo 5 professional accuracy inspections.

In addition to precision, meticulousness is also a major feature of the entire construction. This meticulousness is also reflected in concrete pouring and independent tube construction. Because of the special-shaped structure of the building, the entire building has many complex node areas, intensive steel binding, and difficult concrete pouring, especially the "X" diagonal brace construction, which is an unconventional beam-column structure, and ordinary concrete pouring methods cannot meet the needs. Therefore, the project department has adopted self-compacting concrete pouring in the complex node areas to ensure that the pouring takes shape at one time.


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