In collaboration with the Trishul Aerospace Department at Chandigarh University, I embarked on a challenging project to create a detailed 3D model of a liquid fuel rocket engine using Blender, a powerful open-source 3D creation suite. This project served as a valuable learning experience, allowing me to delve into the intricacies of rocket engine design and showcase my 3D modeling skills.
>Technical Details:
* Software: Blender (3D modeling, rendering)
* Modeling Techniques: Employed precise techniques like reference image modeling and potentially reverse engineering (if applicable) to accurately represent the engine's complex internal and external components.
* Material Properties: Assigned realistic materials to various engine parts to simulate their metallic properties, heat resistance, and functionalities.
* Rigging and Animation (Optional): Explored the possibility of rigging and animating the engine for a more comprehensive visualization of its operational functions (if applicable).
>Outcomes:
This collaborative project fostered my understanding of rocket engine technology and significantly enhanced my 3D modeling capabilities. The final render serves as a valuable resource for the Trishul Aerospace Department, potentially for educational purposes or design visualization. Additionally, it showcases my technical skills and collaborative spirit on my professional profile.
>Specific Considerations:
* If you focused on a specific type of liquid fuel rocket engine (e.g., Merlin engine), mention it for a more detailed description.
* Briefly touch upon the challenges of modeling intricate engine components and how you overcame them.