3D Microgravity Boiling Simulation
Budget: ₹600 – ₹1,500 INR
I need a full-physics CFD model that captures how water boils when gravity is virtually absent, such as aboard the ISS. The set-up must be three-dimensional and treat the problem as a multiphase, conjugate heat-transfer case so solid–fluid coupling is resolved along with the liquid–vapour interface.
The core phenomena I want you to resolve are:
• Bubble formation
• Heat transfer rate
• Phase change dynamics
Please build the model around water at atmospheric reference pressure, specify all governing equations and material properties, and explain any micro-gravity body-force implementation you use in the solver (ANSYS Fluent, OpenFOAM, COMSOL or a similarly capable tool is acceptable). I expect mesh files, solver settings, post-processing scripts, and a short technical note that discusses grid independence, time-step sensitivity, and key results such as wall heat flux and average bubble departure diameter. If you can also supply visualisations (iso-surfaces, temperature contours, and an animation of bubble evolution) that will complete the package.
The core phenomena I want you to resolve are:
• Bubble formation
• Heat transfer rate
• Phase change dynamics
Please build the model around water at atmospheric reference pressure, specify all governing equations and material properties, and explain any micro-gravity body-force implementation you use in the solver (ANSYS Fluent, OpenFOAM, COMSOL or a similarly capable tool is acceptable). I expect mesh files, solver settings, post-processing scripts, and a short technical note that discusses grid independence, time-step sensitivity, and key results such as wall heat flux and average bubble departure diameter. If you can also supply visualisations (iso-surfaces, temperature contours, and an animation of bubble evolution) that will complete the package.