A CE-certified fluid dynamics apparatus for experimental verification of Bernoulli's theorem and pressure-velocity relationships, manufactured by Scientico India to ISO 9001:2015 standards. Supplied with calibration certificate, operation manual, and complete export documentation. Designed for Fluid Mechanics laboratories in engineering colleges and technical institutions.

| Parameter | Specification |
|---|---|
| Total Duct Length | 320 mm |
| Convergent Length | 80 mm |
| Convergent Width | 40 mm |
| Divergent Length | 200 mm |
| Divergent Width | 76 mm |
| Parameter | Specification |
|---|---|
| Pressure Measurement | Static and total pressure |
| Instrument | Pitot-static tube |
| Pressure Display | 16 tube manometers (via trainer) |
| Mounting | Quick release fasteners |
Key Features
Demonstration of Bernoulli’s principle in steady flow
Verification of continuity equation
Measurement of static and total pressures
Determination of dynamic pressure from measured data
Venturi-shaped duct for controlled cross-section variation
Movable Pitot-static tube for pressure distribution analysis
Quick installation on compatible aerodynamics trainer
Applications
Fluid mechanics laboratories
Aerodynamics training and education
Demonstration of pressure–velocity relationships
Study of converging and diverging duct behavior
Experimental validation of Bernoulli’s equation
Construction & Design Details
The module consists of a precisely shaped duct with convergent and divergent sections to create predictable velocity variation. The Pitot-static tube is positioned centrally within the flow channel and can be moved along the duct length to measure pressure distribution at various cross-sections. Static pressure is measured via lateral openings, while total pressure is measured at the forward-facing opening of the Pitot-static tube. The module attaches securely to the aerodynamics trainer using quick release fasteners.
Experiments
Investigation of the continuity equation
Verification of Bernoulli’s principle
Determination of dynamic pressure
Calculation of flow velocity from pressure measurements
Study of pressure and velocity distribution along a Venturi duct
Required for Operation
Aerodynamics Trainer FluidoSurge-X 348
Standard Scope of Delivery
1 Experimental Unit
1 Set of Hoses
1 Instruction Manual
Export & Supply Capability
SCIENTICO manufactures the Bernoulli’s Principle Module FluidoSurge-X 358 for engineering institutions and research laboratories. The system is suitable for domestic and international supply with export packing and documentation provided as required.
Q1. What principle does this module demonstrate?
It demonstrates Bernoulli’s principle and the continuity equation in steady airflow.
Q2. How are pressures measured?
Using a centrally located Pitot-static tube connected to tube manometers on the trainer.
Q3. How is dynamic pressure determined?
Dynamic pressure is calculated as the difference between total and static pressure.
Q4. Can velocity distribution be studied?
Yes. By moving the Pitot-static tube along the duct, pressure and velocity distribution can be analyzed.
Q5. Is this a standalone unit?
No. It requires the Aerodynamics Trainer FluidoSurge-X 348 for operation.