I am a graduate in Mechanical Engineering with hands-on experience in thermodynamics, mechanics, fluid mechanics, aerodynamics, CFD, FSI, CAD, materials and metallurgy and many more fields. I hold a professional Mechanical Design certification, CSWP with strong skills in SolidWorks. I have interests in CFD, Advanced materials, material composites and aerodynamics. I had also participated multiple times in national-level mathematics Olympiads where I earned advanced mathematical problem-solving knowledge.
“Mechanical Engineer focused on Simulation, Design, and Research Innovation”
The training was conducted as a partial fulfillment of a course in Department of Mechanical Engineering, CUET.
Photomath is a globally recognized education platform where students scan and solve academic problems using expert-verified solutions. As part of the expert team, I contributed to delivering high-quality math content aligned with Photomath’s strict academic and formatting standards.
CGPA: 3.83/4 (Class rank 4/181)
GPA: 5/5
GPA: 5/5
*contributed equally (under review)
Below are some sample projects developed by me
A research paper's experimental results are checked through simulation. Pin Fin array is fixed in a plate which is being heated. Cold air is being passed through rectangular duct, in which the array is placed. Due to convection by the cold air and with the help of the fins, the plate is expected to release heat faster. Through the project, for different Re of the incoming air, the temperature change of the plate is observed and noted to compare with the experiment.
This study investigates the effect of arterial plaque morphology on blood flow behavior and wall shear stress (WSS) distribution using Computational Fluid Dynamics (CFD). Two stenosis geometries, semilunar and wavy irregular shapes, were modeled and analyzed to compare their influence on velocity variation, flow disturbances, recirculation zones, and local WSS patterns. The results provide insight into how plaque shape affects hemodynamic conditions and potential cardiovascular risk.
Designed a 3D CAD model of an enclosure of a pcb board to keep the board safe while being used. Proper dimensioning of the box with the help of the printed board was crucial during the design. Finally the box is 3D printed and the pcb is fit inside the box properly.
Designed a 3D CAD model of a solar-powered mobile aquaculture cart as part of a university student's final year project. The cart integrates systems for fish production, water purification, automatic fish feed preparation, and a separate water supply for plant growth.
Designed and 3D printed a custom RC car body, optimized to overcome race track challenges with improved aerodynamics and durability.
Designed and 3D printed a compact worm gearbox, engineered for high torque transmission and reduced speed, ideal for low-speed precision applications.
Designed a custom sensor shield for an LFR (Line Following Robot) car, based on an irregularly shaped PCB already in hand. The shield was reverse-engineered to fit precisely and protect the front sensor from ambient light interference, enhancing the sensor's accuracy and reliability.
Designed a RepRap Recycle Bot that converts waste plastic into 3D printer filament. The system includes a shredding unit, heating and extrusion mechanism, and a motorized spool collector—enabling closed-loop, low-cost, and sustainable filament production for desktop 3D printing.
Created a detailed 2D floor plan in AutoCAD, showcasing efficient space planning and precise architectural detailing.
Created a 3D floor plan using SketchUp and rendered with Enscape, highlighting realistic interior visualization, spatial layout, and lighting effects for architectural presentation.
Below are the details to reach out to me!
Chittagong, Bangladesh