To determine co-efficient of discharge of venturimeter
To determine co-efficient of discharge of venturimeter
To determine co-efficient of discharge of venturimeter
To determine co-efficient of discharge of orificemeter
Venturimeter: 265mm x 75mm x 75mm (LxBxH) made of clear
acrylic conduit-Diameter of Conduit(cross section):13mm & 25mm
Pressure Measurement: 'U' Tube differential manometer
Measuring Tank: 300mm x 300mm x 300mm (LxBxH)
Sump Tank: 600mm x 300mm x 300mm (LxBxH)
Tanks made of SS sheet
Pizometer tube with scale provided on all tanks for water
level measurement
Piping & Fittings: Gl material used
Pump: 0.5HP Single phase, 220VAC±10%
For more details please refer datasheet.
To determine co-efficient of discharge of venturimeter
To determine co-efficient of discharge of orificemeter
Venturimeter: 265mm x 75mm x 75mm (LxBxH) made of clear
acrylic conduit-Diameter of Conduit(cross section):13mm & 25mm
Pressure Measurement: 'U' Tube differential manometer
Measuring Tank: 300mm x 300mm x 300mm (LxBxH)
Sump Tank: 600mm x 300mm x 300mm (LxBxH)
Tanks made of SS sheet
Pizometer tube with scale provided on all tanks for water
level measurement
Piping & Fittings: Gl material used
Pump: 0.5HP Single phase, 220VAC±10%
For more details please refer datasheet.
To find out discharge of usefull and waste water
The whole set-up is well designed and arranged in a good quality painted structure made of square pipe 1280mm x 320mm x 920mm (LxBxH)
To find the point velocity at the center of a tube for different flow rates
To varify the momentum equation by impact of jet on different shapes