
Computational fluid dynamics does not replace measurement but reduces the number of tests by validating a first case and then many cases for better design and safety before production.
Master fluid dynamics for high speed CFD, including pressure, density, viscosity, and Newtonian vs non-Newtonian fluids. Analyze external and internal flows, Mach numbers, laminar and turbulent regimes, and Navier–Stokes models.
Demonstrate the CFD process in ANSYS by building geometry, applying physics and boundary conditions, selecting turbulence, multiphase and heat transfer models, solving, and post-processing to validate results.
Explore turbulence physics from laminar to turbulent transition, energy cascades from large eddies to small scales, and modeling approaches from DNS to RANS, including k-epsilon and Reynolds stress models.
Study multiphase flow modeling with volume fraction to track primary and secondary fluids, choosing one-way, mixture, or two-fluid approaches as fractions vary, and perform post-processing to extract design data.
Computational fluid dynamics (CFD) is a branch of fluid mechanics that uses numerical analysis and data structures to analyse and solve problems that involve fluid flows.
CFD is applied to a wide range of research and engineering problems in many fields of study and industries, including aerodynamics and aerospace analysis, weather simulation, natural science and environmental engineering, industrial system design and analysis, biological engineering and fluid flows, and engine and combustion analysis.
Computational Fluid Dynamics of High Speed Car course explicitly focus on Concept of External CFD of Car & deep explanation of solver and post-processing methodology used by Automotive Industry for the simulation. Ansys Fluent software contains the broad, physical modelling capabilities needed to model flow, turbulence, heat transfer and reactions for industrial applications.
Fluent spans an expansive range, including special models, with capabilities to model in-cylinder combustion, aero-acoustics, and turbomachinery and multiphase systems.
Specially designed for students who have no prior knowledge of any CFD software. We will teach you from scratch and work through to understand all important commands and concepts to understand CFD and its application to sample problems.
Course Outline
· Fluid Dynamics
• CFD Applications
• CFD Tools
• Analysis Process
• Case Studies
• Introduction to Ansys World
• Methodology
• Fluid Model Extraction
• Meshing – 2D & 3D
• Meshing Process &
• Wall Function Based Meshing
• Fluent workspace
• Setting up Analysis
• Execution
• Post Processing
• Reporting