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ME8093 COMPUTATIONAL FLUID DYNAMICS Lecture Notes Download

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ME8093 COMPUTATIONAL FLUID DYNAMICS Lecture Notes Download ME8093 COMPUTATIONAL FLUID DYNAMICS Lecture Notes Download
Department  Mechanical
Year 4th Year
Semester 7th Semester
University Anna University
Regulation  R2017
Subject Code ME8093
Subject Name COMPUTATIONAL FLUID DYNAMICS
Download File ME8093 COMPUTATIONAL FLUID DYNAMICS Lecture Notes, Books, Important 2 Marks Question and Answers, 16 Mark Question with Answers, Syllabus & Question Bank

 

 

ME8093 COMPUTATIONAL FLUID DYNAMICS Syllabus

UNIT I GOVERNING EQUATIONS AND BOUNDARY CONDITIONS
Basics of computational fluid dynamics – Governing equations of fluid dynamics – Continuity, Momentum and Energy equations – Chemical species transport – Physical boundary conditions – Time-averaged equations for Turbulent Flow – Turbulent–Kinetic Energy Equations – Mathematical behaviour of PDEs on CFD – Elliptic, Parabolic and Hyperbolic equations.

UNIT II FINITE DIFFERENCE AND FINITE VOLUME METHODS FOR DIFFUSION
Derivation of finite difference equations – Simple Methods – General Methods for first and second order accuracy – Finite volume formulation for steady state One, Two and Three – dimensional diffusion problems –Parabolic equations – Explicit and Implicit schemes – Example problems on elliptic and parabolic equations – Use of Finite Difference and Finite Volume methods.

UNIT III FINITE VOLUME METHOD FOR CONVECTION DIFFUSION
Steady one-dimensional convection and diffusion – Central, upwind differencing schemes properties of discretization schemes – Conservativeness, Boundedness, Transportiveness, Hybrid, Power-law, QUICK Schemes.

UNIT IV FLOW FIELD ANALYSIS
Finite volume methods -Representation of the pressure gradient term and continuity equation – Staggered grid – Momentum equations – Pressure and Velocity corrections – Pressure Correction equation, SIMPLE algorithm and its variants – PISO Algorithms.

UNIT V TURBULENCE MODELS AND MESH GENERATION
Turbulence models, mixing length model, Two equation (k-Є) models – High and low Reynolds number models – Structured Grid generation – Unstructured Grid generation – Mesh refinement – Adaptive mesh – Software tools.

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COMPUTATIONAL FLUID DYNAMICS Lecture Notes Download

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ME8093 COMPUTATIONAL FLUID DYNAMICS Lecture Notes Collection

ME8093 COMPUTATIONAL FLUID DYNAMICS Notes ( UNIT 1 – UNIT 5) – Download

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