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  • Ansys 4 week course

Ansys 4 week course

  • By Kushawaha Shankar
  • Anysys
  • (0 Rating)
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    • This 4-Week ANSYS Course is designed to provide a strong foundation in engineering simulation and analysis using ANSYS Workbench. The course focuses on practical, industry-oriented learning, helping students and professionals understand how simulations are used in real-world engineering problems.

      Over four weeks, learners will progress from basic concepts to advanced applications, including structural, thermal, and fluid flow analysis. Each module includes hands-on practice, step-by-step demonstrations, and real engineering examples to build confidence and skills.

      What You Will Learn

      • Introduction to ANSYS & Engineering Simulation

      • Geometry creation and meshing techniques

      • Structural analysis (stress, strain, deformation)

      • Thermal analysis (steady & transient)

      • Basics of CFD (fluid flow & heat transfer)

      • Boundary conditions, solution methods, and result interpretation

      • Practical case studies and mini projects

      Who Should Enroll

      • Mechanical / Civil / Electrical engineering students

      • Diploma & B.Tech / B.E students

      • Beginners in simulation and CAE

      • Professionals looking to upskill in ANSYS

      Course Highlights

      • 4-Week structured learning plan

      • Hands-on ANSYS Workbench training

      • Industry-relevant examples

      • Beginner-friendly approach

      • Certificate on completion

      By the end of this course, you will be able to independently perform simulations, analyze results, and apply ANSYS tools to solve engineering problems effectively.

      Show More
      What Will You Learn?
      • Students will learn Ansys course from basic to advance level

      Material Includes

      • 1. student will learn Ansys course
      • 2. student will get internship certificate

      Requirements

      • A phone/laptop with good internet connection

      Audience

      • Students

      Course Content

      Week 1
      Week 1 Summary: Introduction to ANSYS & Basics of Simulation Week 1 focuses on building a strong foundation in ANSYS and engineering simulation concepts. Students are introduced to the role of Computer Aided Engineering (CAE) and how ANSYS is used in industry to analyze and optimize engineering designs. The week begins with an overview of ANSYS software, its applications in mechanical, civil, and electrical engineering, and the different analysis systems available in ANSYS Workbench. Learners understand the simulation workflow, including geometry creation, meshing, setting up physics, solving, and post-processing results. Key emphasis is placed on: Understanding types of engineering analysis (structural, thermal, CFD – overview) Basics of geometry import and creation Introduction to meshing and its importance in accuracy Explanation of boundary conditions and loads Understanding units, material properties, and solver basics Hands-on demonstrations help learners become familiar with the ANSYS Workbench interface, toolboxes, and project schematic. By the end of Week 1, students gain the confidence to set up and run a simple analysis, forming a solid base for advanced simulations in the upcoming weeks.

      • Lesson 1
        04:54
      • Lesson 2
        04:56
      • Lesson 3
        05:01
      • Quiz on Week 1

      Week 2
      Week 2 focuses on understanding meshing techniques and performing structural analysis using ANSYS. This week builds on the geometry and interface knowledge from Week 1 and introduces learners to the core analysis stage of simulation. The week begins with an introduction to finite element meshing, explaining why mesh quality plays a crucial role in simulation accuracy and convergence. Learners explore different mesh types, element shapes, sizing methods, and refinement techniques. Emphasis is placed on achieving a balance between accuracy and computational efficiency. Next, students are introduced to Structural Analysis, specifically Static Structural Analysis. Topics include applying material properties, defining boundary conditions such as fixed supports and loads, and understanding stress, strain, and deformation behavior of components under applied forces. Key concepts covered in Week 2 include: Types of mesh and element selection Mesh controls and quality improvement Material assignment and unit consistency Applying loads and boundary conditions Solving static structural problems Interpreting results such as von Mises stress, total deformation, and safety factors Hands-on exercises allow learners to set up, solve, and analyze real engineering problems, helping them understand how structural failures and design limitations can be predicted using ANSYS. By the end of Week 2, learners gain the ability to perform basic structural simulations independently and confidently interpret results for engineering decision-making.

      • Lesson 1
        10:16
      • Lesson 2
        11:00
      • Lesson 3
        07:07
      • Quiz on Week 2

      Week 3
      Week 3 introduces learners to thermal analysis and the fundamentals of Computational Fluid Dynamics (CFD) using ANSYS. This week expands simulation knowledge beyond structural analysis and focuses on heat transfer and fluid flow behavior, which are critical in many engineering applications. The week begins with Thermal Analysis, where students learn how heat is transferred through components due to conduction, convection, and radiation. Learners perform steady-state and transient thermal analysis, apply thermal loads such as temperature, heat flux, and convection, and analyze temperature distribution and thermal gradients in engineering systems. Next, the course introduces the basics of CFD, explaining how fluids behave under different flow conditions. Students become familiar with key CFD concepts such as fluid properties, flow domains, boundary conditions, and turbulence models. The lesson also covers the CFD workflow in ANSYS, from geometry preparation and meshing to solving and post-processing. Key topics covered in Week 3 include: Fundamentals of heat transfer Steady-state and transient thermal analysis Thermal boundary conditions and material properties Introduction to CFD and fluid flow concepts Basic CFD setup in ANSYS Visualization of temperature and flow results Hands-on examples help learners understand how thermal and fluid simulations are applied in real engineering problems such as heat exchangers, cooling of electronic components, and airflow analysis. By the end of Week 3, learners gain the ability to set up basic thermal and CFD simulations, interpret results, and understand the interaction between heat transfer and fluid flow in practical applications.

      • Lesson 1
        08:54
      • Lesson 2
        08:11
      • Quiz on Week 3

      Week 4
      CFD Analysis, Post-Processing & Project Application Week 4 focuses on Computational Fluid Dynamics (CFD), advanced post-processing techniques, and the application of learned concepts through practical projects. This final week helps learners integrate structural, thermal, and fluid flow knowledge to solve real-world engineering problems. The week begins with CFD analysis, where students learn how to set up fluid flow simulations in ANSYS. Topics include defining fluid properties, applying inlet and outlet boundary conditions, selecting appropriate turbulence models, and understanding solver settings for laminar and turbulent flows. Next, learners explore post-processing and result validation, focusing on interpreting contour plots, vectors, streamlines, and graphs. Emphasis is placed on understanding physical meaning of results, checking solution convergence, and validating simulations for accuracy. The course concludes with a mini project or case study, where learners independently perform a complete simulation—from geometry and meshing to solving and result interpretation. This project strengthens problem-solving skills and builds confidence in applying ANSYS for practical engineering analysis. Key topics covered in Week 4 include: CFD setup and flow analysis Boundary conditions and turbulence models Solver control and convergence monitoring Post-processing techniques and result validation Integrated simulation workflow Mini project and case study application By the end of Week 4, learners gain the ability to perform basic CFD simulations, analyze and validate results, and apply ANSYS tools independently for academic and industry-level problems.

      • Lesson 1
        07:26
      • Lesson 2
        05:11
      • Quiz on Week 4

      A course by

      Kushawaha Shankar
      Kushawaha Shankar
      CAD CAM developer.

      Student Ratings & Reviews

      No Review Yet
      No Review Yet

      Course Includes:

      • Price:
        ₹1,399.00 Original price was: ₹1,399.00.₹249.00Current price is: ₹249.00.
      • Instructor:Kushawaha Shankar
      • Duration: 20 hours
      • Lessons:10
      • Students:4
      • Level:All Levels
      ₹249.00 ₹1,399.00
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