
Natural Convection Boundary Layer Flow
Numerical analysis of natural convection boundary layer flow using FTCS finite-difference, Runge-Kutta similarity solutions, and integral methods, with application to electronic device cooling.

Numerical analysis of natural convection boundary layer flow using FTCS finite-difference, Runge-Kutta similarity solutions, and integral methods, with application to electronic device cooling.

We present a numerical investigation of fully developed heat transfer in channels with non-circular cross-sections using finite-difference equations solved via the Gauss-Seidel iterative method.

This project details the design, construction, and implementation of an advanced fluid dynamics exhibit featuring adjustable flow rates, force measurement systems, and interactive educational components.