To study the operation of a francis turbine To determine the output power of francis turbine To determine the turbine efficiency
To study the operation of a francis turbine To determine the output power of francis turbine To determine the turbine efficiency
To study the operation of a francis turbine
To determine the output power of francis turbine
To determine the turbine efficiency
Supply Head: 10M
Rope brake arrangement with weighing balance
Drum Diameter: 200mm
Discharge measurement through pitot tube with manometer
Sump Tank 250lits: 700mm x 600mm x 600mm (LxBxH)
Tanks made of SS shee
Piping & Fittings: Gl material used
Valves: 1nos. for drain, 1no. for bypass, 1no
Pressure Gauge: 0~4Kg/cm²
For more details please refer datasheet.
To study the operation of a francis turbine
To determine the output power of francis turbine
To determine the turbine efficiency
Supply Head: 10M
Rope brake arrangement with weighing balance
Drum Diameter: 200mm
Discharge measurement through pitot tube with manometer
Sump Tank 250lits: 700mm x 600mm x 600mm (LxBxH)
Tanks made of SS shee
Piping & Fittings: Gl material used
Valves: 1nos. for drain, 1no. for bypass, 1no
Pressure Gauge: 0~4Kg/cm²
For more details please refer datasheet.
To determine co-efficient of discharge of orificemeter
To find out flow rate of air Study the characteristics of air blower Length of Test Section: 1000mm
To find out discharge of usefull and waste water
Study of centrifugal pump characteristics when -Pumps are connected in series -Pumps are connected in parallel