Regime
Set by a stated closure — a model rather than the equations
Every figure drawn under this hypothesis — 82 of them — with the essay each one belongs to and the generator that drew it.
82 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.
- A closure with no memory at all — strain rate stepped from 1 to 2.5, relaxation time one turnover — a turbulence closure · what-turbulence-forgets · hero
- A closure with no memory at all — strain rate stepped from 1 to 2.5, relaxation time one turnover — a turbulence closure · what-turbulence-forgets
- A closure with no memory at all — strain stepped from 1 to 2.5 — homogeneous, a turbulence closure · what-turbulence-forgets
- A closure with no memory at all — relaxation time one turnover — homogeneous turbulence, a turbulence closure · what-turbulence-forgets
- A closure with no memory at all — relaxation time one turnover — a turbulence closure · what-turbulence-forgets
- A closure with no memory at all — relaxation time one turnover — homogeneous, a turbulence closure · what-turbulence-forgets
- A closure with no memory at all — any flow — the count does not depend on one · closure-count
- A closure with no memory at all — strain rate stepped from 1 to 2.5 — homogeneous, no walls, a turbulence closure · what-turbulence-forgets
- A dissipation correlated across every scale — homogeneous shear, strain stepped from 1 to 2.5 — a turbulence closure · what-turbulence-forgets
- A dissipation that lags its production — strain rate stepped from 1 to 2.5 — homogeneous, no walls, a turbulence closure · what-turbulence-forgets · hero
- A dissipation that lags its production — strain rate stepped from 1 to 2.5 — homogeneous, no walls, a turbulence closure · what-turbulence-forgets
- A dissipation that lags its production — homogeneous shear, strain stepped from 1 to 2.5 — a turbulence closure · what-turbulence-forgets
- A dissipation that lags its production — strain rate stepped from 1 to 2.5 — homogeneous shear, a turbulence closure · what-turbulence-forgets
- A dissipation that lags its production — homogeneous shear, strain stepped from 1 to 2.5 — a turbulence closure · what-turbulence-forgets
- A dissipation that lags its production — homogeneous shear, strain stepped from 1 to 2.5 — a turbulence closure · what-turbulence-forgets
- A dissipation that lags its production — strain rate stepped from 1 to 2.5 after fifteen time units — a turbulence closure · what-turbulence-forgets
- A guess with a constant in it — wall units — a consequence of the closure, at any Reynolds number · wall-law · hero
- A guess with a constant in it — wall units — a consequence of the closure, at any Reynolds number · wall-law
- A guess with a constant in it — wall units — a consequence of the closure, at any Reynolds number · wall-law
- A guess with a constant in it — wall units — a consequence of the closure, at any Reynolds number · wall-law
- A guess with a constant in it — wall units — a consequence of the closure, at any Reynolds number · wall-law
- A guess with a constant in it — wall units — a consequence of the closure, at any Reynolds number · wall-law
- A limit nothing reaches — a stated closure in wall units, Re_τ from 2,000 to 10⁶ — the range where a plateau exists · overlap-layer · hero
- A limit nothing reaches — a stated closure in wall units — Re_τ from 180 to 100,000, and the law is the limit · overlap-layer
- A limit nothing reaches — a stated closure in wall units, Re_τ from 2,000 to 10⁶ — the range where a plateau exists · overlap-layer
- A limit nothing reaches — a stated closure in wall units — the quantity plotted is a property of the limit · overlap-layer
- A limit nothing reaches — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- A limit nothing reaches — a stated closure in outer variables — Re_τ from 550 to 50,000 · overlap-layer
- A limit nothing reaches — a stated closure in wall units — the same five Reynolds numbers, drawn the usual way · overlap-layer
- A puff that does not know how old it is — strain rate stepped from 1 to 2.5 — homogeneous, no walls, a turbulence closure · what-turbulence-forgets
- A wake that keeps the drag and forgets the body — far-wake equation with a constant eddy viscosity — a closure · what-turbulence-forgets · hero
- A wake that keeps the drag and forgets the body — far-wake equation with a constant eddy viscosity — a closure · what-turbulence-forgets
- A wake that keeps the drag and forgets the body — constant eddy viscosity — a closure · what-turbulence-forgets
- A wall that is not quite there — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- An oscillation with somewhere to go — any Reynolds number — viscosity is absent, and the closure problem is arithmetic here · mean-field
- How far downwind a surface is remembered — constant eddy viscosity — a closure · what-turbulence-forgets
- The constant that makes a variance negative — plane strain · turbulent-limit
- The drift that turns a current into rolls — 8 s, 1 m swell; wind friction velocity 0.012 m/s; eddy viscosity 0.01 m²/s — a closure · mean-field
- The drift that turns a current into rolls — 8 s, 1 m swell; u* = 0.012 m/s; ν = 0.01 m²/s — an eddy viscosity, a closure · mean-field
- The heat the eddies do not carry — Reτ = 2000; fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer · hero
- The heat the eddies do not carry — Reτ = 2000; fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer
- The heat the eddies do not carry — Reτ = 2000; fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer
- The heat the eddies do not carry — fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer
- The heat the eddies do not carry — fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer
- The heat the eddies do not carry — Reτ = 2000; fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer
- The heat the eddies do not carry — fully developed pipe, uniform wall flux; van Driest mixing length, κ = 0.41, A⁺ = 26; Prₜ = 0.85 borrowed · thermal-layer
- The ladder that never closes — any flow — the count does not depend on one · closure-count
- The ladder that never closes — wall units — a consequence of the closure, at any Reynolds number · wall-law
- The layer with no length in it — a stated closure in wall units — Re_τ from 180 to 100,000, and the law is the limit · overlap-layer · hero
- The layer with no length in it — a stated closure in wall units — Re_τ from 180 to 100,000, and the law is the limit · overlap-layer
- The layer with no length in it — wall units — a consequence of the closure, at any Reynolds number · wall-law
- The layer with no length in it — a stated closure in wall units — the same five Reynolds numbers, drawn the usual way · overlap-layer
- The layer with no length in it — a stated closure in wall units — the quantity plotted is a property of the limit · overlap-layer
- The layer with no length in it — a stated closure in outer variables — Re_τ from 550 to 50,000 · overlap-layer
- The layer with no length in it — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- The layer with no length in it — a stated closure in wall units, Re_τ from 2,000 to 10⁶ — the range where a plateau exists · overlap-layer
- The layer with no length in it — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- The mean is not the flow — any Reynolds number — viscosity is absent, and the closure problem is arithmetic here · mean-field
- The mean is not the flow — any flow — the count does not depend on one · closure-count
- Three buffer layers, one friction — y+ from 0.3 to 100 — turbulent wall flow, in wall units · structure-and-mixture
- Three buffer layers, one friction — the same five Reynolds numbers — turbulent wall flow, in wall units · structure-and-mixture
- Three buffer layers, one friction — the same five Reynolds numbers — turbulent wall flow, in wall units · structure-and-mixture
- Three buffer layers, one friction — the same models — turbulent wall flow, in wall units · structure-and-mixture
- Three buffer layers, one friction — the buffer layer — turbulent wall flow, in wall units · structure-and-mixture
- Turbulent some of the time — any flow — the count does not depend on one · closure-count
- Two averages of one flow — density ratios from one to ten — a Reynolds-averaged description · structure-and-mixture
- Two averages of one flow — 40 m/s of velocity fluctuation, 3 of density, in antiphase — a Reynolds-averaged description · structure-and-mixture
- Two averages of one flow — an editorial figure — a Reynolds-averaged description · structure-and-mixture
- Two averages of one flow — density ratio 7 — a Reynolds-averaged description · structure-and-mixture
- What a code says to a wall — a stated closure in wall units at Re_τ = 20,000 · overlap-layer · hero
- What a code says to a wall — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- What a code says to a wall — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- What a code says to a wall — a stated closure in wall units — Re_τ from 180 to 100,000, and the law is the limit · overlap-layer
- What a code says to a wall — a stated closure in wall units at Re_τ = 2,000 · overlap-layer
- What a code says to a wall — wall units — a consequence of the closure, at any Reynolds number · wall-law
- What a code says to a wall — a stated closure in wall units at Re_τ = 20,000 · overlap-layer
- What a code says to a wall — a stated closure in wall units at Re_τ = 200,000 · overlap-layer
- What a jet keeps, and what it collects — both regimes — the closure is the hypothesis, and it is named in each row · laminar-jet
- What averaging costs — any flow — the count does not depend on one · closure-count · hero
- What averaging costs — any flow — the count does not depend on one · closure-count
- What averaging costs — any flow — the count does not depend on one · closure-count
- What decay never forgets — self-similar decay · turbulent-limit