Quote

Close Basket Menu

You have 0 products in your quote basket

Package

AF1450S

VDAS

SUBSONIC WIND TUNNEL 450mm

An open circuit suction subsonic wind tunnel with a working section of 450 mm by 450 mm and 1000 mm long. Package includes the Aerofoil with Tappings, a Three-Component Balance, two Differential Pressure Transducers, a 32-Way Pressure Display Unit and data acquisition (VDAS-F).

PDF datasheet

Quantity

Decrease
Increase

If you have any questions or you'd like to discuss a product, please call us.

+44 1159 722 611

SUBSONIC WIND TUNNEL 450mm

A compact, practical open-circuit suction wind tunnel for studying aerodynamics. The wind tunnel saves time and money compared with full-scale wind tunnels or airborne laboratories.

The wind tunnel provides accurate results and is suitable for undergraduate study and research projects.

Air enters the tunnel through an aerodynamically designed effuser (cone) that accelerates the air linearly. It then enters the working section and passes through a grill before moving through a diffuser and then to a variable-speed axial fan. The grill protects the fan from damage by loose objects. The air leaves the fan, passes through a silencer unit and then back out to atmosphere.

A separate control and instrumentation unit controls the speed of the axial fan (and the air velocity in the working section).

A metal frame supports the wind tunnel. The frame includes lockable castors for convenient mobility.

Included with the wind tunnel:

  • Three-Component Balance (AF1450T)
  • Balance Angle Feedback Unit (AFA4)
  • NACA 0012 Aerofoil with Tappings (AF1450B)
  • Dual Differential Pressure Display (DP6)
  • 32-Way Pressure Display Unit (AFA6)
  • Pitot Static Traverse x 2 (AF1450X)
  • Protractor
  • Model Holder
  • Versatile Data Acquisition System (VDAS-F) - frame mounted

Learning outcomes

A wide variety of subsonic aerodynamics experiments (some need ancillaries), including:

  • Flow past bluff and streamlined bodies with pressure and velocity observations in the wake
  • Investigations into boundary layer development
  • Influence of aspect ratio on aerofoil performance
  • Performance of an aerofoil with flap, infl uence of flap angle on lift, drag and stall
  • Pressure distribution around a cylinder under sub- and super-critical fl ow conditions
  • Study of characteristics of models involving basic measurement of lift and drag forces
  • Study of the characteristics of three-dimensional aerofoils involving measurements of lift, drag and pitching moment
  • Study of the pressure distribution around an aerofoil model to derive the lift, and comparison with direct measurements of lift
  • Drag force on a bluff body normal to an air flow
  • Flow visualisation

Available experiments

Previous
Next

Experiment

AF1450A

CYLINDER MODEL

View

Experiment

AF1450B

NACA 0012 AEROFOIL MODEL WITH TAPPINGS

View

Experiment

AF1450C

NACA 2412 AEROFOIL MODEL WITH FLAP

View

Experiment

AF1450D

SET OF 2 NACA 0012 AEROFOILS

View

Experiment

AF1450E

FLAT PLATE DRAG MODEL

View

Experiment

AF1450F

FLAT PLATE BOUNDARY LAYER MODEL

View

Experiment

AF1450G

AIRCRAFT MODEL LOW WING

View

Experiment

AF1450H

AIRCRAFT MODEL HIGH WING

View

Experiment

AF1450J

THREE DIMENSIONAL DRAG MODELS

View

Experiment

AF1450K

Set of two vehicle drag models

View

Experiment

AF1450L

S1210 AEROFOIL MODEL

View

Recommended ancillaries

Previous
Next

Ancillary

AFA1

MULTI-TUBE MANOMETER

View

Ancillary

AFA11

SMOKE GENERATOR

View

Alternatives

Previous
Next

Package

AF1125

BENCH-TOP WIND TUNNEL

View

Package

AF1300S

SUBSONIC WIND TUNNEL 305 mm

View

Base Unit

AF1300

SUBSONIC WIND TUNNEL 305 mm

View

Package

AF1600S

SUBSONIC WIND TUNNEL 600mm

View