Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Quizes
Exercises
Publications
Startups
Units
Show all results for
Home
Lecture
Introduction to Hydrodynamics
Graph Chatbot
Related lectures (32)
Incompressible Fluid Mechanics
Covers dimensional analysis, pipe flow, boundary layers, and d'Alembert's paradox, emphasizing the importance of live participation in Zoom sessions.
Boundary Layer Concepts
Explores boundary layer concepts, viscosity impact, drag and lift forces, and dimensional pipe flow analysis.
Boundary Layers: Recap and Effects on Drag and Lift
Covers the importance of boundary layers, viscosity effects on drag and lift.
Turbulence in Astrophysics: Reynolds Decomposition
Covers the modeling of fluid instabilities with linear perturbation theory and explores the origin of unpredictability in turbulence through the Navier-Stokes equations.
Turbulence Concepts: Reynolds Decomposition and Closure Problem
Explores Reynolds decomposition, closure problem, and turbulence modeling challenges.
Lattice Boltzmann: Turbulence Onset
Explores lattice Boltzmann's role in studying turbulence onset and its advantages in hydrodynamics.
Reynolds Decomposition: Understanding Turbulence
Explores the Reynolds decomposition method for studying turbulent flows.
Fluid Mechanics: Foundations and Applications
Covers the foundations of fluid mechanics, focusing on flow problem descriptions and solutions.
CVD: Theoretical Concepts and Boundary Layers
MOOC: Micro and Nanofabrication (MEMS)
Explores theoretical concepts in CVD, focusing on boundary layers and the Reynolds number.
Turbulent Flow Modeling
Explores Reynolds decomposition, RANS equations, k-epsilon model, and turbulent energy evolution.
Introduction: Hydrodynamics
Log in to Mediaspace to watch this video
Covers fundamental hydrodynamics concepts, including two-phase flows, turbulence, and practical CFD examples.
Instability: optimal perturbations and lift-up mechanisms
Log in to Mediaspace to watch this video
Explores the instability of various flow types and lift-up mechanisms in boundary layers.
Turbulence: Numerical Flow Simulation
Log in to Mediaspace to watch this video
Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Internal Forced Convection: Hydrodynamic Aspects
Log in to Mediaspace to watch this video
Covers the hydrodynamic and thermal aspects of internal forced convection.
Laminar and Turbulent Flow
Log in to Mediaspace to watch this video
Covers laminar and turbulent flow, pressure losses, Reynolds number, Poiseuille flow, and friction in piping networks.
Conservation Laws and Bernoulli Equation
Log in to Mediaspace to watch this video
Covers conservation laws in fluid dynamics, including the Venturi effect and Bernoulli equation.
Heat Convection: Boundary Layers and Flow Regimes
Log in to Mediaspace to watch this video
Explores heat convection, boundary layers, and flow regimes, emphasizing the importance of forced convection in energy transport.
Fluid Dynamics Basics: Turbomachinery Applications
Log in to Mediaspace to watch this video
Provides an overview of fluid dynamics principles crucial for turbomachinery design and analysis.
Introduction to Hydrodynamics
Log in to Mediaspace to watch this video
Covers drag reduction, two-phase flows, geophysics, tidal energy harvesting, fish propulsion, flow classifications, instabilities, turbulence, and computational tools.
Viscous Fluid Dynamics: Reynolds Number and Flow Characteristics
Log in to Mediaspace to watch this video
Explores the impact of Reynolds number on fluid flow characteristics and similitude in experimental setups.
Previous
Page 1 of 2
Next