Supersonic Aerodynamic CFD Optimization
Budget: $15 – $25 USD
I am looking for an experienced CFD engineer to conduct a detailed flow analysis on a copper component with an ogival shape. The goal is to optimize its aerodynamic performance under supersonic conditions using ANSYS Fluent. The analysis should focus on identifying critical regions of pressure, turbulence, and flow separation, and propose design improvements accordingly.
Workflow 1. Receive the CAD geometry in STEP, X_T, STL, or IGS format. 2. Set up and run CFD simulations according to the agreed technical parameters (velocities, boundary conditions, material properties). 3. Produce a technical report including: - Detailed flow behavior analysis (pressure, velocity, turbulence). - Identification of critical regions. - Clear, actionable recommendations for design optimization. 4. Collaborate with the CAD designer to validate and iterate on proposed modifications until performance targets are met. --- ●Required Deliverables - PDF report with conclusions, annotated graphics, and methodology. - MP4 videos of key simulation results with explanatory labels. - Numerical data in Excel or CSV (critical measurement points). - Proactive communication via chat to guide the CAD designer in implementing changes. --- ●Must-Have Qualifications - Proven CFD experience on high-speed industrial components (portfolio required). - Proficiency in COMSOL Multiphysics, ANSYS Fluent, OpenFOAM, or equivalent tools. - Ability to translate technical insights into precise design directives. --- ●How to Apply To show you’ve read this description carefully, please mention your favorite color at the beginning of your proposal. We look forward to your proposal and the chance to optimize this design together!
Key Requirements:
- Perform CFD simulations using ANSYS Fluent
- Analyze pressure distribution, turbulence intensity, and flow separation areas
- Provide insights into critical aerodynamic regions
- Suggest design modifications for improved performance in supersonic conditions
Ideal Skills and Experience:
- Expertise in CFD analysis, particularly with ANSYS Fluent
- Strong understanding of supersonic aerodynamics
- Experience with analyzing pressure, turbulence, and flow separation
- Ability to propose effective design optimizations based on simulation results
Please ensure that the analysis is comprehensive and provides actionable insights for enhancing the aerodynamic efficiency of the component.
Workflow 1. Receive the CAD geometry in STEP, X_T, STL, or IGS format. 2. Set up and run CFD simulations according to the agreed technical parameters (velocities, boundary conditions, material properties). 3. Produce a technical report including: - Detailed flow behavior analysis (pressure, velocity, turbulence). - Identification of critical regions. - Clear, actionable recommendations for design optimization. 4. Collaborate with the CAD designer to validate and iterate on proposed modifications until performance targets are met. --- ●Required Deliverables - PDF report with conclusions, annotated graphics, and methodology. - MP4 videos of key simulation results with explanatory labels. - Numerical data in Excel or CSV (critical measurement points). - Proactive communication via chat to guide the CAD designer in implementing changes. --- ●Must-Have Qualifications - Proven CFD experience on high-speed industrial components (portfolio required). - Proficiency in COMSOL Multiphysics, ANSYS Fluent, OpenFOAM, or equivalent tools. - Ability to translate technical insights into precise design directives. --- ●How to Apply To show you’ve read this description carefully, please mention your favorite color at the beginning of your proposal. We look forward to your proposal and the chance to optimize this design together!
Key Requirements:
- Perform CFD simulations using ANSYS Fluent
- Analyze pressure distribution, turbulence intensity, and flow separation areas
- Provide insights into critical aerodynamic regions
- Suggest design modifications for improved performance in supersonic conditions
Ideal Skills and Experience:
- Expertise in CFD analysis, particularly with ANSYS Fluent
- Strong understanding of supersonic aerodynamics
- Experience with analyzing pressure, turbulence, and flow separation
- Ability to propose effective design optimizations based on simulation results
Please ensure that the analysis is comprehensive and provides actionable insights for enhancing the aerodynamic efficiency of the component.