Bernoulli’s Theorem Demonstration
Categories: Lab EquipmentBernoulli’s Theorem Demonstration Features of Bernoulli’s Theorem Demonstration This equipment enables to study the Bernoulli’s theorem through the use of a classical venture tube Equipped with 6...
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Description
Bernoulli’s Theorem Demonstration
Features of
Bernoulli’s Theorem Demonstration- This equipment enables to study the Bernoulli’s theorem through the use of a classical venture tube
- Equipped with 6 static tapping points and a pilot tube for the measurement of dynamic pressure along the duct
- The tapping points and pilot tube are connected with a seven tubes differentialpressure gauge
- The water flow rate is controlled by two valves placed at the inlet & outlet of the Venturi tube
Specifications
- AISI 304 stainless steel structure
- 7 tubes pressure gauge, range 0 ~ 500 mm
- Diameter of venture tube : 20 mm
- Venturi tube throat diameter : 10 mm
- Upstream taper : 14º
- Downstream taper : 21º
- Dimension : 650 x 400 x 850 mm
Training Program
- Demonstration of Bernoulli’s theorem and of its limitations
- Direct measurement of the static and dynamic pressure distribution along a Venturi tube
- Determining the discharge coefficient of the Venturi tube
quick overview :
Bernoulli’s Theorem Demonstration
Features of
Bernoulli’s Theorem Demonstration- This equipment enables to study the Bernoulli’s theorem through the use of a classical venture tube
- Equipped with 6 static tapping points and a pilot tube for the measurement of dynamic pressure along the duct
- The tapping points and pilot tube are connected with a seven tubes differentialpressure gauge
- The water flow rate is controlled by two valves placed at the inlet & outlet of the Venturi tube
Specifications
- AISI 304 stainless steel structure
- 7 tubes pressure gauge, range 0 ~ 500 mm
- Diameter of venture tube : 20 mm
- Venturi tube throat diameter : 10 mm
- Upstream taper : 14º
- Downstream taper : 21º
- Dimension : 650 x 400 x 850 mm
Training Program
- Demonstration of Bernoulli’s theorem and of its limitations
- Direct measurement of the static and dynamic pressure distribution along a Venturi tube
- Determining the discharge coefficient of the Venturi tube
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