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1. Determine the head loss friction in a pipe for i ) 1’’ inch pipe. 2. Conduct performance test on two stage reciprocating air compressor and plot relevant graphs. 1. Determine the coefficient of discharge of impact jet on vane for inclined Vane. a) 6mm diameter nozzle b)5 mm diameter nozzle 2. Conduct performance test on two stage reciprocating air compressor and plot relevant graphs. 1. Determine the Cd for Venturimeter also plot a graph. 2. Conduct performance test on Air Blower for different opening ( ½, full) 1. Determine the head loss due to various fittings in pipe.(sudden contraction) 2. Conduct performance test on Air Blower for different opening ( 1/4, 3/4) 1. Determine the head loss due to various fittings in pipe.(sudden expansion). 2. Conduct performance test on Centrifugal pump for constant speed and also draw the performance curve for the same. 1. Determine the Cd for orificemeter also plot a graph. 2. Conduct performance test on Centrifugal pump for constant Head and also draw the performance curve for the same.

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Page 1: DocumentFm

1. Determine the head loss friction in a pipe for i) 1’’ inch pipe.

2. Conduct performance test on two stage reciprocating air compressor and plot relevant

graphs.

1. Determine the coefficient of discharge of impact jet on vane for inclined Vane.

a) 6mm diameter nozzle b)5 mm diameter nozzle

2. Conduct performance test on two stage reciprocating air compressor and plot relevant

graphs.

1. Determine the Cd for Venturimeter also plot a graph.

2. Conduct performance test on Air Blower for different opening ( ½, full)

1. Determine the head loss due to various fittings in pipe.(sudden contraction)

2. Conduct performance test on Air Blower for different opening ( 1/4, 3/4)

1. Determine the head loss due to various fittings in pipe.(sudden expansion).

2. Conduct performance test on Centrifugal pump for constant speed and also draw the

performance curve for the same.

1. Determine the Cd for orificemeter also plot a graph.

2. Conduct performance test on Centrifugal pump for constant Head and also draw the

performance curve for the same.

Page 2: DocumentFm

1.Determine the coefficient of discharge of impact jet on vane for inclined Vane.

a) 6mm diameter nozzle b)5 mm diameter nozzle

2. Conduct performance test on Francis turbine for constant speed and also draw the

performance curves for the same

1. Determine the head loss due to friction in a pipe for i) 1/2’’ inch pipe.

2. Conduct performance test on Francis turbine for constant speed and also draw the

performance curve for the same

1. Determine the head loss due to various fittings in pipe (for gate valve).

2. Conduct performance test on Francis turbine for constant Head and also draw the

performance curve for the same.

1.Determine the coefficient of discharge of impact jet on vane for Hemispherical Vane.

a) 6mm diameter nozzle b)5 mm diameter nozzle

2. Conduct performance test on Francis turbine for constant speed and also draw the

performance curve for the same.

1.Determine the coefficient of discharge of impact jet on vanes for Hemispherical Vane.

a) 6mm diameter nozzle b)5 mm diameter nozzle

2.Conduct performance test on Pelton turbine for constant speed and also draw the

performance curve for the same.

1. Determine the valve of Cd for nozzle by experiment and graphical method.

2. Conduct performance test on Pelton turbine for constant speed and also draw the

performance curve for the same.

Page 3: DocumentFm

1. Determine the head loss due to various fittings in pipe.(sudden expansion).

2. Conduct performance test on Pelton turbine for constant Head and also draw the

performance curve for the same.

1. Determine the Cd for Retangular Notch also plot a graph.

2. Conduct performance test on Pelton Wheel turbine for constant Head and also draw the

performance curve for the same.

1. Determine the Cd for orificemeter also plot a graph.

2. Conduct performance test on Reciprocating pump for constant Head and also draw the

performance curve for the same.

2 Conduct performance test on Reciprocating pump for constant Speed and also draw the

performance curve for the same.

1. Determine the head loss due to various fittings in pipe.(900 Elbow).

2. Conduct performance test on Francis turbine for Constant Head and also draw the

performance curve for the same.

Page 4: DocumentFm

1. Determine the Cd for Venturimeter also plot a graph.

2. Conduct performance test on Air Blower for different opening (1/4, 3/4)

1. Determine the head loss due to various fittings in pipe.(sudden contraction)

2. Conduct performance test on Air Blower for different opening ( 1/4, 3/4)

1. Determine the Cd for Retangular Notch also plot a graph.

2. Conduct performance test on Pelton Wheel turbine for constant speed and also draw the

performance curve for the same.

1. Determine the Cd for V Notch( 600) also plot a graph.

2 Conduct performance test on Reciprocating pump for constant Head and also draw the

performance curve for the same.

1. Determine the head loss due to friction in a pipe for i) 3/4’’ inch pipe.

2. Conduct performance test on Reciprocating pump for constant Speed and also draw the

performance curve for the same.

1. Determine the Cd for Venturimeter also plot a graph.

2. Conduct performance test on Centrifugal pump for constant speed and also draw the

performance curve for the same.

1. Determine the Cd for V Notch( 600) also plot a graph.

2. Conduct performance test on Centrifugal pump for constant Head and also draw the

performance curve for the same.

Page 5: DocumentFm