Turbulence: Numerical Flow SimulationExplores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Energy Systems OptimizationIntroduces a course on modeling and optimizing energy systems, emphasizing the importance of informed decision-making and teamwork in addressing energy challenges.
Introduction to HydrodynamicsCovers fundamental hydrodynamics concepts, including two-phase flows, geophysics, swimming propulsion, irrigation, flow models, types of flows, instabilities, turbulence, and computational tools.
Engineering Multi-Scale SystemsIntroduces the Swiss Research Program focused on engineering multi-scale systems for health, security, energy, and the environment.
Nano-Tera: Engineering the FutureCovers engineering multi-scale systems for health, security, energy, and the environment, focusing on taking innovation from labs to daily life.
Introduction to HydrodynamicsCovers drag reduction, two-phase flows, geophysics, tidal energy harvesting, fish propulsion, flow classifications, instabilities, turbulence, and computational tools.
Understanding TurbulenceBy the instructor Tobias Schneider explores the fundamental aspects of turbulence and its significance in various scientific disciplines.