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Hydraulic Machine Lab



Centrifugal Pump Test Rig

Centrifugal Pump Test Rig



The setup is designed to study the performance of centrifugal pump.

Set up consists of a centrifugal pump coupled with electrical motor, supply tank, measuring tank & pipe fittings for closed loop water circulation. Pressure and Vacuum gauges are connected on delivery and suction side of pump for the purpose of measurement.

The flow rate of water is measured using measuring tank and stop watch provided.

 

 



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Gear Pump Test Rig



The setup is designed to study the performance of gear pump.

 

Set up consists of a gear pump having a pair of meshed gears coupled with electrical motor, supply tank, measuring tank & pipe fittings for closed loop oil circulation. Pressure and Vacuum gauges are connected on delivery and suction side of pump for the purpose of measurement.

 

The flow rate of water is measured using measuring tank and stop watch provided.

 



Gear Pump Test Rig

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Hydraulic Ram

Hydraulic Ram



The setup is designed to study the Hydraulic Ram.

 

Hydraulic Ram is used for pump little quantity of water to high head from a large quantity of water available at low head. It works on a principle of water hammer stating that “when flowing water is suddenly stopped in a long pipe a pressure wave travels along the pipe creating an effect of water hammer�.

 

Set up consists of a pipe section fitted with a pulse valve and non-return valve, a supply reservoir on a stand which is connected to an overhead tank, an air vessel above the valve chamber smoothes cyclic fluctuations from the Ram delivery. Different pressure may be applied to the pulse valve to change the closing pressure and hence the operating characteristic.

 

The flow rate of useful and waste water is measured using measuring tank and stop watch provided. Pressure gauge is connected for the purpose of measurement.

 



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Kaplan Turbine Test Rig



Kaplan Turbine is an axial flow reaction turbine named in honour of Dr. B. Kaplan, a German Engineer. This turbine is suitable for low head. The power produced by a turbine is proportional to QH. As the head (H) decreases the J discharge (Q) must increase to produce the same power.

 

The present set-up consists of a scroll casing housing a runner. Water enters the turbine through the stationary guide vanes and passes through the runner axially. The runner has a hub and airfoil vanes, which are mounted on it. The water is fed to the turbine by means of Centrifugal Pump. The runner is directly mounted on one end of a central SS shaft and other end is connected to a brake arrangement. A transparent hollow cylinder made of acrylic is fitted in between the draft tube and the casing for observation of flow. Load is applied to the turbine with the help of rope brake arrangement so that the efficiency of the turbine can be calculated. The set-up is supplied with control panel. A draft tube is fitted on the outlet of the turbine. The set-up is complete with guide mechanism. Pressure and Vacuum gauges are fitted at the inlet and outlet of the turbine to measure the total supply head on the turbine.

 



Kaplan Turbine Test Rig

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Pelton Wheel Turbine Test Rig

Pelton Wheel Turbine Test Rig



Pelton Wheel Turbine is only impulse water turbine now in common use named in honour of Sir L.A. Pelton (1829- 1908) of California, USA. It is a tangential flow impulse turbine. The water strikes the buckets along the tangent of the runner. The energy available at the inlet of the turbine is only kinetic energy. The pressure at the inlet and outlet of the turbine is atmospheric. This turbine is used for high heads.

The present set-up consists of a runner. The buckets are mounted on the runner. The water is fed to the turbine, through SS nozzle with a SS spear, by means of Centrifugal Pump, tangentially to the runner. Row of water into turbine is regulated by adjusting the spear position by the help of a given hand wheel The runner is directly mounted on one end of a central SS shaft and other end is connected to a brake arrangement. The circular window of the turbine casing is provided with a transparent acrylic sheet for observation of flow on to the buckets. This runner assembly is supported by rigid MS structure. Load is applied to the turbine with the help of this brake dynamometer so that the efficiency of the turbine can be calculated. Pressure gauge is fitted at the inlet of the turbine to measure the total supply head to the turbine.

 



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Mr. Varun Chopra (CEO)
Edutek House, 29- B, Inderpuri, Ambala Cantt
Ambala, Haryana - 133 001, India
Telephone:  +(91)-(171)-2654329



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