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Old 10th November 2020, 11:37 AM
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Default Sathyabama Institute of Science and Technology B.E. - Mechanical Engineering Part Time SMEA2301 Fluid Mechanics and Machinery Lab Syllabus

Sathyabama Institute of Science and Technology B.E. - Mechanical Engineering Part Time SMEA2301 Fluid Mechanics and Machinery Lab Syllabus


SATHYABAMA INSTITUTE OF SCIENCE AND TECHNOLOGY SCHOOL OF MECHANICAL ENGINEERING

SMEA2301 FLUID MECHANICS AND MACHINERY LAB
L T P Credits Total Marks
0 0 4 2 100

SUGGESTED LIST OF EXPERIMENTS
FLUID MECHANICS LAB

1. Measurement of friction factor in pipe flow.
2. Determination of discharge coefficient for venturi meter.
3. Determination of discharge coefficient for orifice meter.
4. Determination of discharge coefficients for notches.
5. Determination of Meta centric height of ship model.
6. Determination of Co-efficient of discharge of Orifice and Mouth Piece.
7. Determination of Co-efficient of velocity in Pitot tube.

FLUID MACHINERY LAB
1. Study and Performance characteristics of Centrifugal Pump.
2. Study and Performance characteristics of Reciprocating Pump.
3. Study and Performance characteristics of Multistage Centrifugal Pump.
4. Study and Performance characteristics of Gear Pump.
5. Study and Performance characteristics of Jet Pump.
6. Study and Performance characteristics of Deep well Turbine Pump.
7. Study and Performance characteristics of Pelton Wheel Turbine.
8. Study and Performance Characteristics of Francis Turbine.
9. Study and Performance characteristics of Kaplan Turbine.


COURSE OUTCOMES
On completion of the course, student will be able to
CO1 - Measure the discharge coefficient for venturi meter, orifice meter, notches and orifice.
CO2 - Measure the velocity coefficient for pitot tube.
CO3 - Analyze the stability of ship model by measuring the Meta centric height.
CO4 - Estimate performance parameters of a given Centrifugal and Reciprocating pump.
CO5 - Evaluate the performance of gear pump and jet pump.
CO6 - Select and analyze an appropriate turbine with reference to given situation in power plants.
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