Syllabus

JNTUH B.Tech 2016-2017 (R16) Detailed Syllabus Heat Transfer

Heat Transfer Detailed Syllabus for B.Tech third year second sem is covered here. This gives the details about credits, number of hours and other details along with reference books for the course.

The detailed syllabus for Heat Transfer B.Tech 2016-2017 (R16) third year second sem is as follows.

B.Tech. III Year II Sem.   L/T/P/C
Course Code:ME603PC       4/1/0/4
Note: Heat Transfer Data Book is permitted.
Pre-requisite: Thermodynamics

Course Objectives: To provide knowledge about application of conduction, convection and radiation heat transfer concepts to different practical applications

Course Outcome: At the end of this course, student will be able to

  • Understand the basic modes of heat transfer
  • Compute one dimensional steady state heat transfer with and without heat generation
  • Understand and analyze heat transfer through extended surfaces
  • Understand one dimensional transient conduction heat transfer
  • Understand concepts of continuity, momentum and energy equations
  • Interpret and analyze forced and free convective heat transfer
  • Understand the principles of boiling, condensation and radiation heat transfer
  • Design of heat exchangers using LMTD and NTU methods

UNIT – I : Introduction: Modes and mechanisms of heat transfer – Basic laws of heat transfer – General discussion about applications of heat transfer. Conduction Heat Transfer: Fourier rate equation – General heat conduction equation in Cartesian, Cylindrical and Spherical coordinates – simplification and forms of the field equation – steady, unsteady, and periodic heat transfer – Initial and boundary conditions One Dimensional Steady State Conduction Heat Transfer: Homogeneous slabs, hollow cylinders, and spheres- Composite systems– overall heat transfer coefficient – Electrical analogy – Critical radius of insulation

UNIT – II : One Dimensional Steady State Conduction Heat Transfer: Variable Thermal conductivity – systems with heat sources or Heat generation-Extended surface (fins) Heat Transfer – Long Fin, Fin with insulated tip and Short Fin, Application to error measurement of Temperature One Dimensional Transient Conduction Heat Transfer: Systems with negligible internal resistance – Significance of Biot and Fourier Numbers –Infinite bodies- Chart solutions of transient conduction systems- Concept of Semi infinite body.

UNIT – III : Convective Heat Transfer: Classification of systems based on causation of flow, condition of flow, configuration of flow and medium of flow – Dimensional analysis as a tool for experimental investigation – Buckingham  Theorem and method, application for developing semi – empirical non- dimensional correlation for convection heat transfer – Significance of non-dimensional numbers – Concepts of Continuity, Momentum and Energy Equations – Integral Method as approximate method -Application of Von Karman Integral Momentum Equation for flat plate with different velocity profiles. Forced convection: External Flows: Concepts about hydrodynamic and thermal boundary layer and use of empirical correlations for convective heat transfer -Flat plates and Cylinders.

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TEXT BOOKS:

  • Heat and Mass Transfer – Dixit /Mc Graw Hill
  • Heat and Mass Transfer / Altamush Siddiqui/ Cengage

REFERENCE BOOKS:

Essential Heat Transfer – Christopher A Long / Pearson

Heat Transfer –Ghoshdastida / Oxford

For all other B.Tech 3rd Year 2nd Sem syllabus go to JNTUH B.Tech Mechanical Engineering 3rd Year 2nd Sem Course Structure for (R16) Batch.

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