National Institute of Technology Rourkela

राष्ट्रीय प्रौद्योगिकी संस्थान राउरकेला

ଜାତୀୟ ପ୍ରଯୁକ୍ତି ପ୍ରତିଷ୍ଠାନ ରାଉରକେଲା

An Institute of National Importance

Syllabus

Course Details

Subject {L-T-P / C} : CE6473 : Computer Application in WR Engineering - I { 0-0-3 / 2}

Subject Nature : Practical

Coordinator : Prof.(Ms.) Sanat Nalini Sahoo

Syllabus

1 Application of CFD problems in fluid flow problems using Mat-Lab codes ( solutions to Parabolic, hyperbolic and elliptic equations and stability analysisi)
2 Application of CES Software for predicting stage-discharge, boundary shear and depth-averaged velocity in an open channel flow
3. Application of ANSYS to Pipe flow and to open channel flow to find velocity contours and boundary shear stress distributions in the flow cross-sections

Course Objectives

  • To become proficient in the application of the FLUENT, CFD and CES software for application in Water Resources engineering
  • To be competent enough in solving governing equations of fluid flow problems through numerical approach and to validate the results from the theoretical approach.
  • To compute the flow variables of an open channel flow and pipe flow for different roughness and geometric conditions by applying recent hydraulic software.
  • To solve the partial differential equations by finite difference approaches by different approximate techniques and to learn the stability check applicable to fluid flow problems

Course Outcomes

At the end of the laboratory student can able to <br />1. Covers most of the applications on fundamental of Computational Fluid dynamics. <br />2. Run QUASI 2-D and 3-D Hydraulics and CFD software applicable for solving Water Resources engineering problems. <br />3.Solve the governing partial differential equations by use of MAT LAB code.

Essential Reading

  • K. A Hoffmann, Computational Fluid Dynamics, Engineering Education System, 2000 , CFD disretisations numerical solutions using MATLAB codes
  • J.D. Anderson, Computational Fluid Dynamics, McGraw Hill, 1995 , CFD disretisations numerical solutions using MATLAB codes

Supplementary Reading

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