ANSYS Fluent - Help with Velocity Contours and Boundary Conditions

Job ID: 36699928

Budget: £10 – £20 GBP

Hello! I am seeking an ANSYS Fluent expert who can assist me in completing my solution and setting up velocity contours for my models. I have already configured most of the setup, but I'm encountering issues in generating velocity contours, despite successfully calculating the velocity.

Specifically, I require help with editing the inlet and outlet boundary conditions to ensure they are appropriate for a mixed flow impeller. Additionally, I need assistance in resolving the problem where the velocity contours are not being displayed correctly.

Here's what I'm looking for in a freelancer:

1. Proficiency in ANSYS Fluent: You should have a strong command of ANSYS Fluent and be familiar with working on flow simulations and boundary conditions.

2. Expertise in Mixed Flow Impellers: It is essential that you have experience working with mixed flow impellers and can accurately set up the inlet and outlet boundary conditions to ensure accurate results.

3. Troubleshooting Skills: I need someone who can identify and resolve the issue with the velocity contour not being displayed correctly. Your problem-solving abilities will be crucial in this task.

If you possess the required expertise and can help me address these challenges, I would be delighted to collaborate with you. Please provide details of your relevant experience, any previous projects you have worked on, and your proposed approach to tackle this task.

Please note that the project will be conducted remotely, and you should be available for communication throughout the process. I am open to discussing the project requirements and any additional information you may need.

The project can be accessed here: https://1drv.ms/f/s!AulXPr4GLKvTlxEX-MNsJmJqVC1h?e=8Oduig

If you are confident in your ANSYS Fluent skills and are eager to assist me in overcoming these hurdles, kindly reach out to me with your proposal. I look forward to working together and successfully completing this project. Thank you!
Related categories: Computational Fluid Dynamics Ansys