Hydraulics detailed Syllabus for Construction Technology (CS), K scheme PDF has been taken from the MSBTE official website and presented for the diploma students. For Subject Code, Subject Name, Lectures, Tutorial, Practical/Drawing, Credits, Theory (Max & Min) Marks, Practical (Max & Min) Marks, Total Marks, and other information, do visit full semester subjects post given below.
For all other MSBTE Construction Technology 4th Sem K Scheme Syllabus PDF, do visit MSBTE Construction Technology 4th Sem K Scheme Syllabus PDF Subjects. The detailed Syllabus for hydraulics is as follows.
Rationale
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Course Outcomes:
Students will be able to achieve & demonstrate the following COs on completion of course based learning
- Interpret the pressure parameters obtained from pressure measuring devices in liquids.
- Determine total hydrostatic pressure and center of pressure for different conditions.
- Calculate relevant parameters for given fluid flow.
- Determine loss of head for flow through pipe in given situation.
- Find the relevant fluid flow parameters in open channels.
Unit I
Pressure Measurement 1.1 Technical terms used: Fluid, Fluid Mechanics, Hydraulics, Hydrostatics, and hydrodynamics-Ideal and Real Fluid, Application of hydraulics in Civil Engineering field. 1.2 Physical properties of fluid : Mass Density, Weight Density, Specific Volume, Specific Gravity, Surface Tension of Water, Capillarity of Water, Viscosity, Units of Viscosity, Kinematic Viscosity, Newton’s law of Viscosity. 1.3 Various types of pressure: Fluid Pressure, Pressure Head, Pasacl’s Law and its applications, Absolute Pressure, Gauge Pressure, Atmospheric Pressure, Vacuum Pressure. 1.4 Pressure Measuring Devices: Piezometer, Simple U tube Manometer, U Tube Differential Manometer and Inverted U Tube Differential Manometer, Bourdon Tube Pressure Gauge.
Suggested Learning Pedagogie
Model Demonstratio Video Demonstratio Demonstratio Presentations Lecture Using Chalk-Board Hands-on Site/Industry Case Study
Unit II
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Unit III
Hydro kinematics and Hydro dynamics 3.1 Types of Fluid Flow: Steady, unsteady, uniform, non uniform, laminar, turbulent, compressible and incompressible flow, Reynold’s number. 3.2 Discharge: Definition, Unit, Continuity Equation. 3.3 Energies associated with fluid flow: Potential, Kinetic, Pressure Energy and total energy. 3.4 Bernoulli’s Equation: Statement, Assumptions, Equation, Practical applications , Modified Bernoulli’s Theorem.
Suggested Learning Pedagogie
Model Demonstratio Video Demonstratio Demonstratio Presentations Lecture Using Chalk-Board Hands-on
Unit IV
Flow through Pipes And Pumps 4.1 Major head loss in pipe: Frictional loss and its computation by Darcy Weisbach equation. (Simple Numericals on Darcy Weisbach equation) 4.2 Minor Energy (Head) losses in pipe: Sudden Enlargement, Sudden Contraction, loss of head at entrance of pipe, loss of head at exit of pipe, loss of head due to bend in pipes and fittings. 4.3 Flow through pipes in series, pipes in parallel and Dupit’s equation for equivalent pipe. 4.4 Hydraulic Gradient Line and Total Energy Line(No Numerical, only representative Diagram). 4.5 Discharge measuring device for pipe flow: Venturimeter, Construction and working. 4.6 Discharge measuring for a tank: using Orifice, Hydraulic Coefficients of Orifice. 4.7 Pump: Types of pump :Centrifugal, Reciprocating pumps and Submersible pumps. 4.8 Centrifugal pump: Component parts and working. 4.9 Types of heads :Suction head, delivery head, static head and Manometric head. 4.10 Compute power requirement of Centrifugal Pump.
Suggested Learning Pedagogie
Model Demonstratio Video Demonstratio Demonstratio Presentations Lecture Using Chalk-Board Hands-on Site/Industry
Unit V
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List of Experiments:
- *Computation of physical properties of given fluid (tap water and muddy water). 2 C
- Computation of physical properties of given liquid (oil and Mercury). 2 C
- Use of Bourdon Gauge to measure the pressure at a given point. 2 C
- *Use of U tube differential manometer to measure the pressure difference between two given points. 2 C
- *Find the resultant pressure and its position for given situation of liquid in a tank. 2 C
- Use of Reynold’s apparatus to determine type of flow. 2 C
- *Use of Bernoulli’s apparatus to obtain Total Energy Line for flow in closed conduit of varying cross sections. 2 C
- *Use of Friction factor Apparatus to determine the friction factor for the given pipe. 2 C
- *Determination of minor losses in pipe for sudden contraction and sudden enlargement. 2 C
- Determination of minor losses in pipe fitting such as Bend and Elbow. 2 C
- *Calibration of Venturimeter to find out the discharge in a pipe. 2 C
- Calibration of Orifice to find out the discharge through a tank. 2 C
- *Determination of efficiency of given Centrifugal Pump. 2 C
- *Use of ‘V’ notch to measure the discharge through open channel. 2 C
- Use of rectangular notch to measure the discharge through open channel. 2 C
Self Learning
Micro Project
- Collect the technical brochure of available brands of pump in the market and prepare report with your comm Determination of type and capacity of pump for residential bungalow (06 Occupants) of G+1 Storey having 20 built up area.
Prepare a model of rectangular and trapezoidal channel.
Assignment
- State and explain causes and remedial measures of water hammer.
Explain the necessity of hydraulic jump.
Explain with neat sketch working of single acting and double acting reciprocating pump.
Explain critical, sub critical and supercritical flow with reference to Froude’s number.
Laboratory Equipment
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Learning Materials
- Modi, P. N. and Seth, S.M. Hydraulics and Fluid Mechanics Standard book house, Delhi ISBN:13: 97 8189401269;
- Ramamrutham S, and Narayan, R. Hydraulics, Fluid Mechanics and Fluid Machines Dhanpat Rai Publishing Company, New Delhi, ISBN:8187433841
- Khurmi, R S Hydraulics, Fluid Mechanics, Hydraulic machines S Chand Publishers, New Delhi ISBN: 9788121901628
- Rajput, R K Fluid Mechanics S Chand, New Delhi ISBN: 9788121916
- Dr. R.K. Bansal Fluid mechanics and hydraulic machines Laxmi Publication; New Delhi, ISBN: 9 8131808153
Learning Websites
- https://eerc03-iiith.vlabs.ac.in/ An MoE, Govt of India virtual laboratory of Hydraulics and Fluid Mechanics.
- https://nptel.ac.in/courses/105105203 Basics of Fluid Mechanics
- https://archive.nptel.ac.in/courses/105/106/105106114/ Classification of flow
- https://nptel.ac.in/courses/105103021 Open Channel flow
- http://www.nitttrc.edu.in/nptel/courses/video/105101082/L01. html Fluid Properties
- https://onlinecourses.nptel.ac.in/noc24_ce20/preview Hydraulic Jump
- http://www.nitttrc.edu.in/nptel/courses/video/105103021/L01. html Advanced Hydraulics
- https://www.youtube.com/watch?v=mIF7nQBbaj0&list=UU__JX7j7HY XROO6jCAUmHIw&index=231 Fluid Pressure
- https://www.youtube.com/watch?v=-jb5A9GIuNQ Energy Gradient of pipe flow
- https://www.youtube.com/watch?v=qie6UCJqM_Q Bernoulli’s Equation
- https://www.youtube.com/watch?v=PH75Y1wIubQ Hydraulic Pumps
For detail Syllabus of all other subjects of Construction Technology, K scheme do visit Construction Technology 4th Sem Syllabus for K scheme.
For all Construction Technology results, visit MSBTE Construction Technology all semester results direct links.