Wind Tunnel – FM-1849-28
Educational Benefits
The Wind Tunnel Trainer helps students understand:
- Aerodynamic principles
- Airflow characteristics
- Boundary layer behavior
- Pressure variation around bodies
- Lift and drag generation
- Streamline visualization
- Flow turbulence effects
It provides a practical learning platform for mechanical engineering, aerospace engineering, automotive engineering, and fluid dynamics studies.
Experiments That Can Be Performed
Using Accessories, Users Can Perform:
- Determination of drag and lift coefficients for different models
- Pressure distribution around drag bodies
- Boundary layer analysis
- Investigation of flutter
- Wake measurement
- Streamline visualization using fog/smoke generator
Technical Features
- Subsonic open wind tunnel
- Eiffel-type aerodynamic design
- Uniform airflow generation
- Low turbulence measuring chamber
- Variable-speed airflow control
- Digital measurement system
- Electronic lift and drag sensing
- Pressure analysis system
- Optional PC-based data acquisition
- Industrial-grade construction
Wind Tunnel – FM-1849-28
The Wind Tunnel FM-1849-28 is an advanced educational and experimental system designed for the comprehensive study of fluid mechanics, aerodynamics, and airflow behavior. This high-quality training equipment enables students, researchers, and engineering professionals to analyze airflow patterns and investigate the aerodynamic characteristics of objects moving through air. The system is ideal for universities, engineering laboratories, research centers, and technical training institutes.
Product Highlights
- Designed for advanced aerodynamic flow experiments
- Suitable for fluid mechanics and aerodynamics laboratories
- High-performance subsonic Eiffel-type open wind tunnel
- Enables accurate study of lift, drag, pressure distribution, and boundary layer
- Equipped with variable-speed drive for airflow control
- Air velocity up to 30 m/s
- Includes electronic force sensor for lift and drag measurement
- Features 16-tube manometer for pressure curve analysis
- Supports optional DAQ Data Acquisition System
- Provides digital display of airflow velocity and pressure values
- Designed with low turbulence measuring section
- Strong industrial structure with smooth operation and mobility wheels
Product Description
The FM-1849-28 Wind Tunnel Trainer is specially developed to demonstrate and analyze the principles of airflow and aerodynamic behavior in engineering applications. The system allows users to study the interaction between moving air and different models such as aerofoils and drag bodies.
This experimental subsonic wind tunnel uses an “Eiffel” type open-circuit design, where air is drawn from the surrounding environment, accelerated through the tunnel, passed over the test model, and finally exhausted back into the atmosphere بواسطة a high-efficiency fan system. The carefully engineered nozzle contour and flow straightener ensure a highly uniform airflow distribution with minimal turbulence in the measuring section.
The trainer includes a square cross-section measuring chamber that allows clear visualization and precise testing of aerodynamic models. Students can perform detailed investigations on airflow velocity, lift force, drag force, wake formation, and pressure distribution around objects.
The system incorporates a built-in axial fan with guide vane and variable speed control, ensuring stable airflow generation with energy-efficient operation. Air velocity can reach up to 30 meters per second, enabling accurate aerodynamic experimentation.
For measurement and analysis, the trainer is equipped with:
- Electronic two-component force sensor for lift and drag force measurement
- Inclined tube manometer
- Digital pressure display in Pascals
- 16-tube manometer for drag body pressure curve measurement
The optional DAQ (Data Acquisition) System allows real-time transfer of measured parameters such as:
- Pressure
- Velocity
- Force
- Angle measurements
These values can be analyzed directly on a PC using dedicated software, providing a modern hands-on learning experience for students and researchers.
