Explores fluid flow instabilities, including Rayleigh-Taylor and Kelvin-Helmholtz, and parallel flow concepts like normal mode decomposition and Squire's transformation.
Explores fundamental equations and modeling in hydroacoustics for hydroelectric installations, focusing on continuity, momentum, and wave propagation speed.
Explores different fluid flow instabilities such as Rayleigh-Taylor and Kelvin-Helmholtz, discussing transient and spatial growth, dispersion relation, and shear layer instability.
Explores the application of the SIMPLE algorithm in solving Navier-Stokes equations and compares staggered grid vs. collocated grid approaches in numerical flow simulations.
Covers the fundamentals of numerical flow simulation, emphasizing the importance of understanding the methodology and practicing simulation techniques to run full simulations autonomously.