My Projects
In this section, you can find my selected academic projects that I have done throughout my M.Sc. and B.Sc. programs.
Cmputational Fluid Dynamics
Most of my projects consist of CFD studies that I have done during my education alongside programming. I mainly used the ANSYS Fluent software. Later on, I shifted toward COMSOL Multiphysics and learned to use it in Multiphysics cases. I have worked on various mechanisms, such as species transport, combustion, reactive flows, bioreactor cell culture, microchannels, particle tracing and inertial migration.
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Selected Projects:
- Fluid flow over particles in microchannels
- Fluid flow in microchannels
- COMSOL Simulation for Examination of Albumin Synthetization of Alive and Functional Tissue-Like Culture on a Chip
Programming
I learned computer programming in the first semester of my bachelor's earlier than most of the mechanical engineering students in our department and have been using it in many engineering applications. These areas consist of combustion, thermal equilibrium, thermodynamics, heat transfer, gas dynamics, fluid mechanics, molecular dynamics, optics, image processing, microfluidics, inertial migration, etc.
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Selected Projects:
- Particle Image Velocimetry (PIV) image processing
- Laser-Induced Fluorescence (LIF) image processing
- Molecular Dynamics Simulation of Liquid Water Molecules Inside a Carbon Nanotube (CNT)
- Water Transport through an Asymmetrically Charged Rotating Carbon Nanotube (CNT) simulation in LAMMPS program
- A CFD Code to Solve Navier-Stokes Equations of Motion and Concentration Equation of a 2D Fluid Flow Field
- A Solver for Designing a Constant Mach number Turner Duct
- A Solver for Steady-State Heat Diffusion Equation
Laboratory
Particle Image Velocimetry (PIV)
The main goal of this project was to calculate the flow velocity field in various conditions, including jet injection, natural convection and mixing. This can be done by tracking the glass beads immersed in the fluid by image processing. I developed a MATLAB code to solve the velocity domain using a couple of images which were taken in the potics laboratory.
Calculated velocity flow field for the natural convection mechanism.
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Laser-Induced Fluorescence (LIF)
This experiment was done in order to calculate the concentration and temperature distribution of an injecting fluorescent dye (Rhodamine B) in a fluid medium. I developed another MATLAB code in order to process various images with or without the background noise of the CCTV camera.
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