Transient Liquid Heat-Transfer CFD Simulation
Budget: $350 – $400 NZD
I need a full transient CFD model of a liquid system where heat transfer is the dominant concern. The goal is to understand how the flow evolves in time while capturing the accompanying thermal behaviour.
You will start from my STEP geometry, create a high-quality mesh, assign the correct liquid properties, and apply the temperature-dependent boundary conditions I provide. As the simulation marches forward in time, I want clear, quantitative insight into the following flow characteristics:
• Velocity profiles
• Pressure distribution
• Turbulence intensity
• Temperature field
Run the model long enough to reach statistically steady behaviour (or the specified 10 s physical time if that happens first). When finished, hand over:
• The complete, runnable project file (ANSYS Fluent, CFX, OpenFOAM, or Star-CCM+—use whichever you are most proficient with and note the version).
• Raw data exports and high-resolution plots for the four parameters above at key time steps.
• A concise report (≈5-6 pages) outlining mesh metrics, solver settings, convergence history, and the main thermal-flow insights.
Accuracy, repeatability, and a clean, well-documented setup are essential for acceptance.
You will start from my STEP geometry, create a high-quality mesh, assign the correct liquid properties, and apply the temperature-dependent boundary conditions I provide. As the simulation marches forward in time, I want clear, quantitative insight into the following flow characteristics:
• Velocity profiles
• Pressure distribution
• Turbulence intensity
• Temperature field
Run the model long enough to reach statistically steady behaviour (or the specified 10 s physical time if that happens first). When finished, hand over:
• The complete, runnable project file (ANSYS Fluent, CFX, OpenFOAM, or Star-CCM+—use whichever you are most proficient with and note the version).
• Raw data exports and high-resolution plots for the four parameters above at key time steps.
• A concise report (≈5-6 pages) outlining mesh metrics, solver settings, convergence history, and the main thermal-flow insights.
Accuracy, repeatability, and a clean, well-documented setup are essential for acceptance.