To determine co-efficient of discharge of nozzlemeter
To determine co-efficient of discharge of nozzlemeter
To determine co-efficient of discharge of nozzlemeter
Nozzlemeter: 265mm x 75mm x 75mm (LxBxH) made of clear
acrylic conduit
Diameter of Conduit: 25mm ID, centre point 13mm
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
For more details please refer datasheet.
To determine co-efficient of discharge of nozzlemeter
Nozzlemeter: 265mm x 75mm x 75mm (LxBxH) made of clear
acrylic conduit
Diameter of Conduit: 25mm ID, centre point 13mm
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
For more details please refer datasheet.
No. of teeth on theinput wheel : RING wheel(Internal Gear) : 62 teeth
Hydraulic grade line & the total energy line along the flow section can be plotted & can be studied
The Relative Density Test is an important test in civil engineering that helps determine the relative compactness of cohesionless soils, such as sands and gravels.
To find the point velocity at the center of a tube for different flow rates