Bernoulli's Equation

Categories: Engineering Lab Equipment

DescriptionThis experiment module illustrates Bernoulli’s equation as applied to a convergent-divergent duct. A Pitot static tube measures both the total pressure and the static pressure independently...


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Description

Description
This experiment module illustrates Bernoulli’s equation as applied to a convergent-divergent duct. A Pitot static tube measures both the total pressure and the static pressure independently. The tube traverses along the axis of the duct and connects to the Manometer (ancillary) via flexible tubes fitted with quick-release couplings. A clear scale printed on the duct helps to show the probe position. Students confirm the constant total pressure while observing the rise and fall of the static pressure. They compare the velocity-area ratio as calculated from Bernoulli’s equation to the experimental results.

Features
One of a series of eight experiment modules that fi t to the Modular Air Flow Bench 
Quickly and simply illustrates Bernoulli’s equation for air, and its limitations due to boundary layer effects
Toggle clamp connections to the Modular Air Flow Bench contraction for quick and easy fitment
Quick-release couplings for rapid and reliable pressure connection to the Manometer
Transparent front to the duct so that the profile of the test nozzle and the position of the Pitot static tube can be seen clearly

Specifications
Pa c k e d d i m e n s i o n s a n d w e i g h t:
0.2 m3; 10 kg
100 mm x 50 mm transparent duct

Operating Conditions
O p e r at i n g e n v i r o n m e n t: Laboratory
S t o r a g e t e m p e r at u r e r a n g e : –25°C to +55°C (when packed for transport)
O p e r at i n g t e m p e r at u r e r a n g e : +5°C to +40°C
O p e r at i n g r e l at i v e h u m i d i t y r a n g e : 80% at temperatures < 31°C decreasing linearly to 50% at 40°C


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quick overview :

Description
This experiment module illustrates Bernoulli’s equation as applied to a convergent-divergent duct. A Pitot static tube measures both the total pressure and the static pressure independently. The tube traverses along the axis of the duct and connects to the Manometer (ancillary) via flexible tubes fitted with quick-release couplings. A clear scale printed on the duct helps to show the probe position. Students confirm the constant total pressure while observing the rise and fall of the static pressure. They compare the velocity-area ratio as calculated from Bernoulli’s equation to the experimental results.

Features
One of a series of eight experiment modules that fi t to the Modular Air Flow Bench 
Quickly and simply illustrates Bernoulli’s equation for air, and its limitations due to boundary layer effects
Toggle clamp connections to the Modular Air Flow Bench contraction for quick and easy fitment
Quick-release couplings for rapid and reliable pressure connection to the Manometer
Transparent front to the duct so that the profile of the test nozzle and the position of the Pitot static tube can be seen clearly

Specifications
Pa c k e d d i m e n s i o n s a n d w e i g h t:
0.2 m3; 10 kg
100 mm x 50 mm transparent duct

Operating Conditions
O p e r at i n g e n v i r o n m e n t: Laboratory
S t o r a g e t e m p e r at u r e r a n g e : –25°C to +55°C (when packed for transport)
O p e r at i n g t e m p e r at u r e r a n g e : +5°C to +40°C
O p e r at i n g r e l at i v e h u m i d i t y r a n g e : 80% at temperatures < 31°C decreasing linearly to 50% at 40°C

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