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This wind tunnel model offers a variety of flight area diameters ranging from 3 meters (9.8 feet) to 5.2 meters (17.1 feet), allowing for different configurations and group sizes. Depending on the model, it can accommodate between 3 to 8 pilots simultaneously, making it suitable for both individual training and group flight activities. The system is designed to generate airflow speeds from 225 km/h (159 MPH) to 275 km/h (172 MPH), ensuring that users experience realistic flight conditions for training and testing purposes.
The tunnel’s high-performance design ensures precise airflow control, providing stable and accurate testing environments for aerodynamic research, flight equipment development, and performance evaluation. It is ideal for use in academic institutions, aerospace engineering, and professional flight simulation settings.
With a maximum height ranging from 19.6 meters (64.3 feet) to 31.5 meters (103.3 feet), the Closed-Loop Wind Tunnel is capable of housing large-scale flight simulations and testing. The system’s width varies from 8.2 meters (26.9 feet) to 17.1 meters (56.1 feet), providing ample space for multiple participants and equipment. The wind tunnel’s base length can extend from 11 meters (35.9 feet) to 30.6 meters (100.4 feet), depending on the specific configuration.
One of the key advantages of the Closed-Loop Wind Tunnel is its energy efficiency. Average power consumption ranges from 300 kW to 650 kW, depending on the model and its specific requirements. This ensures high performance without excessively high energy costs, making it an efficient choice for long-term use. The wind tunnel operates with relatively low noise levels of 69 dB in the spectator areas, ensuring that the experience remains comfortable for both users and spectators.
Installation is efficient and straightforward, with a typical production time of just 5 months and an installation time of 3 days. This quick turnaround ensures that customers can begin using the wind tunnel for research, training, or entertainment purposes with minimal delay.









