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The Navier-Stoles equations resolve how the flow divides around this 2D silhouette of the B-2 Spirit bomber.
38,006 Aufrufe • vor 5 Tagen •via X (Twitter)
34 Kommentare

OpenAI Stole work on Navier-Stokes.

So you don't need to have the radar CSA it could be possible to detect and identify a craft by it's turbulent flow @HLC_actual That could be fun....

@HLC_actual Wow, I jus thought about this but I wasnt aware it could be done. It makes sense.

@HLC_actual @LockheedMartin @northropgrumman @RaytheonTech @CIA Lmao Home brew tech screws stealth FUN

@HLC_actual @LockheedMartin @northropgrumman @RaytheonTech @CIA Mwhahah

Insanely viscous fluid.

nice

The singularity is near!

Hmmm. Is lift actually provided by the difference in turbulence?

Yes, the same way it did last week.

And thus also the peregrine falcon in a dive!

I'm more interested in 3D vortex breakdowns

That’s cool! Interesting how the vortices detach and roll off.

Fluid dynamics are honestly wild. It’s fascinating how those complex equations make such a stealthy shape look so smooth in the simulation.

yeah, the CFD simulations are so amazing to and so useless most of the times!

Gut check - there no way it's that turbulent

In fact, it models it well. Nature doesn't calculate to accomplish things; it simply plays out the rules of physics that we assume we know.

Beautiful visualization. The alternating vortices peeling off the trailing edge form a textbook Karman vortex street. I love how the simulation makes the Navier-Stokes equations tangible.

😯 wow!

But what about the electrostatic charge airflow adjustments they use on the skin of the bomber?

Yeah, we didnt account for any of the surface engineering effects

nothing close to a breakthrough, known for ages

Stokes, my Dear. Navier-Stokes.

Jus a typo😅

@FordPrefec21206 If OpenAi took the data, I mean then you wouldn’t be wrong. 😹

@FordPrefec21206 😅 I see what you mean

I hope we will get better flying kites soon )

In classical aerodynamics (including B-2 Spirit) there is a principle stating that vortices must be shed behind the vehicle; however, depending on ambient vortices (irregular natural winds), these vortices can exceed predictions, pushing the tail up or down (turbulence)

So what does the solution to Navier-Stoles does for physics or in general life or computing

Sexy

This wasn't known before?

Solves? Really? Maybe a FEA does it? Really check?

was solved 5000 years ago 🙃

I need top view

