The Hilton Airflow System F100 and its expandable range of optional accessories enable students to safely investigate the fundamentals of airflow and simple aerodynamic experimental procedures. The unit consists of a small footprint, high volume high pressure centrifugal fan with adjustable flow control, inlet and outlet couplings. The Hilton Airflow System F100 is available with an extensive range of optional accessories that makes the unit a very flexible and economic investment. The extensive range of optional accessories allow investigation of Bernoulli’s equation, drag forces on various shapes, Investigation of a turbulent jet, investigation of boundary layer development, pressure distribution of flow around a bend, fan performance characteristics, jet attachment, pressure distribution around a cylinder, pressure distribution around an aerofoil, flow visualisation studies, air flow measurement methods.

The complete range is safe and suitable for unsupervised student operation and responds immediately to system changes allowing efficient use of laboratory time.



F100 Airflow System Base Unit

The Hilton Airflow System F100 and its range of optional accessories enable students to safely investigate the fundamentals of airflow and simple aerodynamic experimental procedures.

HB100 Hydraulics Bench

The hydraulics bench is mounted on lockable castor wheels and is constructed around a sturdy framework onto which all elements of the hydraulics bench are mounted. The main water storage tank from which the electrically operated external pump takes its water is situated on the framework. An on/off control on the front of the frame, together with a safety cut out controls the pump.

F100A Multi-Tube Manometer

A multi-tube manometer with a common reservoir, that may be used to give a graphic display of pressure distribution on multi-point pressure tapings.

F100B Bernoulli's Equation

A convergent divergent duct section that connects to the Hilton Airflow System F100 using a flexible coupling.

F100C Boundary Layer Investigation

A reversible flat plate located inside a rectangular duct. The plate has one smooth and one artificially roughened face. The duct has removable profile plates that can establish an increasing or decreasing pressure gradient in the direction of flow.

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