Regime
Set by the inverse temperature of a vortex gas — an equilibrium rather than a flow
Every figure drawn under this hypothesis — 6 of them — with the essay each one belongs to and the generator that drew it.
6 figure placements state this regime. The strip along the foot of every figure names two things — the model that produced it and the regime it holds in — and this listing is read back out of the finished drawing rather than from what produced it.
- An equilibrium a three-dimensional flow cannot have — a neutral vortex gas in a disc with the plane's logarithmic interaction — no walls, no viscosity · inverse-cascade · hero
- An equilibrium a three-dimensional flow cannot have — a neutral vortex gas in a disc with the plane's logarithmic interaction — no walls, no viscosity · inverse-cascade
- An equilibrium a three-dimensional flow cannot have — a neutral vortex gas in a disc with the plane's logarithmic interaction — no walls, no viscosity · inverse-cascade
- An equilibrium a three-dimensional flow cannot have — a neutral vortex gas in a disc with the plane's logarithmic interaction — no walls, no viscosity · inverse-cascade
- An equilibrium a three-dimensional flow cannot have — a neutral vortex gas in a disc with the plane's logarithmic interaction — no walls, no viscosity · inverse-cascade
- An equilibrium a three-dimensional flow cannot have — a neutral vortex gas in a disc with the plane's logarithmic interaction — no walls, no viscosity · inverse-cascade