Syllabus

JNTUH B.Tech 2nd Year 1 sem (2-1) Fluid Mechanics and Open Channel Hydraulics Engineering R13

JNTUH B.Tech 2nd year Fluid Mechanics and Open Channel Hydraulics Engineering gives you detail information about Fluid Mechanics and Open Channel Hydraulics Engineering subject.

Objective: To enable the students to design efficient water conveyance systems like canals, channels and pipes from places of origin to delivery points by acquiring knowledge on the principles of mechanics of fluids, water
measurement and regulation and open channel hydraulic principles.

Unit – I: Fluids-definitions-classification-properties, dimensions. Fluid pressure–introduction– Measurement of fluid pressure–peizometer tube manometry–types of manometers. Mechanical gauges-Bourdon’s tube pressure gauge-Diaphragm pressure gauge–Dead weight pressure gauge. Fluid Static force on submerged surfaces– Total force on horizontal, vertical and inclined surfaces. Center of pressure of an inclined immersed surfaceCentre of pressure of a composite section. Pressure on a curved surface and its applications. Kinematics of fluid
flow– introduction – continuity of fluid flow – Types of flow lines.

Unit –II: Boundary layer theory- Thickness of Boundary layer, Thickness of Boundary layer in a laminar flow, Thickness of Boundary layer in a turbulent flow, Prandtl’s Experiment of Boundary Layer separation. Dynamics of fluid flow –Various forms of energy in fluid flow, frictional loss, general equation. Bernoulli’s theorem, Euler’s equation of motion. Practical applications of Bernoulli’s theorem, Verturimeter, pitot tube, Orifice meter.

Unit – III: Buoyancy of flotation – metacentric height. Flow through orifices (Measurement of Discharge) – Types of orifices, Jet of water, vena contracta, Hydraulic coefficients, Experimental Method for Hydraulic Coefficients,  Discharge through a rectangular orifice. Flow through Orifices (Measurement of Time) – Time of Emptying a square, rectangular or circular tank through an orifice at its bottom, time of emptying a hemispherical tank through an orifice at its bottom. Time of emptying a circular horizontal tank through an orifice at its bottom. Time of emptying a tank of variable cross-section through an orifice. Flow through Mouthpieces – Types of Mouthpieces – Loss of Head of a liquid flowing in a pipe, Discharge through a Mouthpiece. Flow over Notches Types of notches, Discharge over a Rectangular Notch, Triangular Notch, Stepped Notch. Time of emptying a tank over a Rectangular Notch, Triangular Notch. Flow over weirs – Types of weirs, Discharge over a weir, Francis’s formula for Discharge over a Rectangular weir (Effect of End Contractions), Bazin’s formula for Discharge over a rectangular weir, velocity of approach, Determination of Velocity of Approach.

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TEXT BOOKS:
1. Hydraulics and Fluid Mechanics, Modi P M and Seth S. M. 1973. Standard Book House, Delhi.
2. Open Channel Hydraulics, Chow V T, 1983, McGraw Hill Book Co., New Delhi.

REFERENCES:
1. A Text book of Hydraulics, Fluid Mechanics and Hydraulic Machines, Khurmi, R. S. 1970. S. Chand & Company Ltd., New Delhi.

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