MR3351 - Fluid Mechanics and Thermal Systems Syllabus Regulation 2021 Anna University

MR3351 deals with the semester III B.E Robotics and Automation Syllabus at Anna University based on regulation 2021. In this article, we discuss the Fluid Mechanics and Thermal Systems syllabus along with textbooks and references.

We intend to provide a full-planned syllabus for students to gain knowledge of the syllabus. It will give students to be equipped with perfect books and the required knowledge to prepare for the examinations. These are necessary to get a qualified certificate from the university with aggregate marks. Students must perform well to take a step forward toward their careers. They must earn a qualified degree help them to achieve success in their goals. In this article, MR3351 – Fluid Mechanics and Thermal Systems Syllabus will pioneer the way to do that. Hope the following information is useful. Don’t forget to share it with your classmates.

If you want to know more about the syllabus of B.E Robotics and Automation connected to an affiliated institution’s four-year undergraduate degree program. We provide you with a detailed Year-wise, semester-wise, and Subject-wise syllabus in the following link B.E Robotics and Automation Syllabus Anna University, Regulation 2021.

Aim Of Objectives:

  • To knowledge in Fluid Properties and Statics.
  • To understand the concept of fluid kinematics and Dynamics.
  • To learn about the flows in fluid, Viscous flows and flow through pipes.
  • To understand the basics laws of thermodynamics.
  • To understand the second law of thermodynamics and entropy.

MR3351 – Fluid Mechanics and Thermal Systems Syllabus

Unit I: Fluid Properties And Fluid Statics

Fluid Definition and Classification – Properties of fluids: Density, Specific Weight, Specific Volume, Specific Gravity, Viscosity, Compressibility, Bulk Modulus, Capillary and Surface Tension – Fluid statics: Concept of fluid static pressure – Pascal‘s law –Absolute and Gauge pressures – Manometers: Types and Pressure measurement – Concept of Buoyancy and Floatation.

Unit II: Fluid Kinematics And Fluid Dynamics

Fluid Kinematics: Types of fluid flow – Continuity equation in two and three dimensions – Velocity and Acceleration of fluid particle – Velocity potential function and Stream function. Fluid dynamics: Euler’s equation along a streamline –Bernoulli’s equation and applications – Venturi meter, Orifice meter and Pitot tube.

Unit III: Viscous Flow, Flow Through Pipes And Dimensional Analysis

Viscous flow: Shear stress, pressure gradient relationship – Flow of viscous fluid through circular pipe – Flow through pipes: Loss of head due to friction – Minor head losses – Hydraulic gradient and Total energy lines – Flow through pipes in series and in parallel – Power transmission through pipes. Dimensional analysis: Buckingham’s theorem.

MR3351 - Fluid Mechanics and Thermal Systems Syllabus Regulation 2021 Anna University

Unit IV: Basics Of Thermodynamics And First Law Of Thermodynamics

Thermodynamics – Microscopic and macroscopic point of view – Systems, properties, process, path, cycle. Thermodynamic equilibrium – Zeroth law of Thermodynamics – internal energy, enthalpy, specific heat capacities CV and CP, Relationship between CV and CP. First law of Thermodynamics – Application to closed and open systems – Steady Flow Energy Equation (SFEE) – Simple problems.

Unit V: Second Law Of Thermodynamics And Entropy

Second Law of Thermodynamics – Kelvin Planck and Clausius Statements – Equivalents of Kelvin Planck and Clausius statements. Reversibility – Irreversibility, reversible cycle – Heat engine, heat pump, and refrigerator. Carnot cycle and Clausius theorem, the property of entropy, the inequality of Clausius – Entropy principle – General expression for entropy – Simple problems in entropy.

Text Book:

  1. Bansal R.K., ―Fluid Mechanics and Hydraulic Machines‖, 9th Edition, Laxmi Publications, New Delhi, 2015.

References:

  1. Nag P.K., ―Engineering Thermodynamics‖, 5th Edition, Tata McGraw Hill Publishing Company, New Delhi, 2013.
  2. Cengel Yunus A. and Boles Michael A., ―Thermodynamics: An Engineering Approach‖, 7th Edition, McGraw-Hill, New York, 2011.
  3. Frank M. White., ―Fluid Mechanics‖, 7th Edition, Tata McGraw Hill Publishing Company, New Delhi, 2009.

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