📎 Code: bit.ly/NS_nonlinear...
🎥 Video: youtu.be/jjFHG5EJeFc
#OpenOceanModels #NavierStokes #FluidDynamics #Bernoulli #Venturi #Oceanography #CFD
Next, we’ll explore what happens when nonlinear advection interacts with other forces. Stay tuned.
#NavierStokes #FluidDynamics #NonlinearAdvection #Oceanography #OpenOceanModels
6/
This is entry #8 in the OpenOceanModels series, where we isolate individual terms from Navier–Stokes to better understand geophysical flows.
#OpenOceanModels #NavierStokes #FluidDynamics #Viscosity #OceanModeling #Python #NumericalSimulation
💻 Code (Python):
bit.ly/OOM_acoustic...
🎥 Full simulation:
www.youtube.com/watch?v=1aJa...
#OpenOceanModels #NavierStokes #Acoustics #Sound #FluidDynamics #Oceanography #Python
6/6 🔜 Next episodes: we'll progressively add other terms (pressure, viscosity, etc.) to build a deeper intuition of ocean & atmospheric fluid dynamics.
#OpenOceanModels #Oceanography #FluidDynamics #InertialOscillation #Science
7/ 🧪 Try it yourself:
bit.ly/OOM_wind_dri...
Modify wind and friction to see how they shape the gyre’s strength and structure.
Let’s make ocean modeling open and accessible! 🌊
#OpenOceanModels #Oceanography
1/ What does “open” mean in #OpenOceanModels? It’s not just about open-source software; it’s about making oceanographic modeling accessible to everyone, from students to professionals. Knowledge should flow freely, just like the oceans we study. 🌐
5/ 🔔 Follow us and spread the word to help #OpenOceanModels reach more students and educators in marine science. This is just the beginning!
1/ 📘 With #OpenOceanModels, we want numerical models to be a go-to resource for teaching ocean science, helping students explore oceanic physical processes through hands-on learning.