3D Model
Electrical Mild Enclosure__NR-280925
devices requiring themal mangement. Design Featiures: Compact frootprint for easy mounting, optimezed airflow for thermal efficiency.
3D Model
Vortex Damper
flow control device used in exhaust systems, HVAC, power plants, and industrial ducts to regulate airflow by adjusting vanes inside a cylindrical or rectangular housing. In SolidWorks, it is designed using
Designer
sabastiandarko
Biomechanical Designer
validation and stakeholder presentation Simulation & Biomechanical Analysis (ANSYS) – stress testing, airflow simulation (CFD), deformation analysis, and performance validation under real-world loads Human-Centered
3D Model
Laser Engaver for Passports
2 different directions on the YZ plans which required a gimbling device and turntable. There is airflow through a plenum beneath the card and the chamber had to go through UL and FDA testing for both laser
3D Model
V6 ENGINE DESIGN
Inspired by real automobile systems, this project deepened my expertise in mechanical components, airflow dynamics, and CAD best practices. Each iteration was a step toward innovation, precision, and engineering
3D Model
Round-type induced draft cooling tower
successfully fabricated and deployed in an industrial setup, optimized for thermal efficiency and airflow performance.
3D Model
3D Printed Pipe Design
of this project was to create a functional and manufacturable part that can be used in fluid or airflow systems. The pipe geometry was carefully designed to ensure smooth flow and structural integrity
3D Model
cooler-asmbly-v13
blower unit. The design accommodates cooling pads and internal water circulation, ensuring optimal airflow and evaporation. Ideal for residential or industrial use, the housing combines functionality with
3D Model
HVAC Duct 3D Modeling for a Single-Family House
according to architectural and structural constraints. The duct system was optimized for efficient airflow, complying with ASHRAE and SMACNA standards. Full coordination was done with other MEP disciplines
3D Model
Impeller_v2
Surfacing: Developed using complex surface modeling techniques in Autodesk Fusion 360 to ensure smooth airflow and optimal blade geometry. • Design for Manufacturing (DFM): The blade profiles and hub transition