Regime
A truncation — a model system standing in for a flow, and named as one
Every figure drawn under this hypothesis — 37 of them — with the essay each one belongs to and the generator that drew it.
37 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 millionth is enough — r = 28 — well past where the truncation described convection · lorenz-truncation · hero
- A millionth is enough — r = 28 — well past where the truncation described convection · lorenz-truncation
- A millionth is enough — r = 14 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- A millionth is enough — σ = 10, β = 8/3 — the Hopf threshold at r = 24.7368, in closed form · lorenz-truncation
- A millionth is enough — r = 10 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- A millionth is enough — r = 60 — well past where the truncation described convection · lorenz-truncation
- A threshold with a closed form — r = 14 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- A wake that keeps the drag and forgets the body — any Reynolds number — viscosity is absent from the model entirely · karman-model
- A wake told what to do — any Reynolds number — the street model contains no viscosity · regime-collapse
- Every mode decays and it grows anyway — a model system, not a flow — no fluid property appears anywhere in it · transient-growth · hero
- Every mode decays and it grows anyway — a model system, not a flow — no fluid property appears anywhere in it · transient-growth
- Every mode decays and it grows anyway — Re = 40 · a model system, not a flow · transient-growth
- Every mode decays and it grows anyway — Re = 40 · a model system, not a flow — no fluid property appears in it · transient-growth
- Every mode decays and it grows anyway — a model system, not a flow — the Reynolds number here is a parameter of a matrix · transient-growth
- Every mode decays and it grows anyway — a model system, not a flow — the Reynolds number here is a parameter of a matrix · transient-growth
- Every mode decays and it grows anyway — a model system, not a flow — no fluid property appears anywhere in it · transient-growth
- Every wavelength at once — any Reynolds number — viscosity is absent from the model entirely · karman-model
- The frequency a wake chooses — any Reynolds number — the street model contains no viscosity · regime-collapse
- The randomness that is not in the equations — r = 28 — well past where the truncation described convection · lorenz-truncation · hero
- The randomness that is not in the equations — r = 28 — well past where the truncation described convection · lorenz-truncation
- The randomness that is not in the equations — r = 28 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- The randomness that is not in the equations — σ = 10, β = 8/3 — the Hopf threshold at r = 24.7368, in closed form · lorenz-truncation
- The randomness that is not in the equations — r = 14 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- The randomness that is not in the equations — r = 40 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- The randomness that is not in the equations — r = 60 — well past where the truncation described convection · lorenz-truncation
- The street this site cannot draw — any Reynolds number — viscosity is absent from the model entirely · karman-model · hero
- The street this site cannot draw — any Reynolds number — viscosity is absent from the model entirely · karman-model
- The street this site cannot draw — any Reynolds number — viscosity is absent from the model entirely · karman-model
- The truncation that cannot carry three times the heat — Lorenz's three modes are the smallest truncation of the same rolls · lorenz-truncation · hero
- The truncation that cannot carry three times the heat — Lorenz's three modes are the smallest truncation of the same rolls · lorenz-truncation
- The truncation that cannot carry three times the heat — σ = 10, β = 8/3 — the Hopf threshold at r = 24.7368, in closed form · lorenz-truncation
- Three numbers left of a fluid — r = 28 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation · hero
- Three numbers left of a fluid — r = 28 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- Three numbers left of a fluid — σ = 10, β = 8/3 — the Hopf threshold at r = 24.7368, in closed form · lorenz-truncation
- Three numbers left of a fluid — r = 20 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- Three numbers left of a fluid — r = 14 — a truncation of convection, and past r ≈ 5 not a model of it · lorenz-truncation
- Three numbers left of a fluid — r = 28 — well past where the truncation described convection · lorenz-truncation