Regime
Re below 2300 in a pipe — the exact solution, and the flow takes it
Every figure drawn under this hypothesis — 13 of them — with the essay each one belongs to and the generator that drew it.
13 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.
- Where a liquid does pull — laminar — Re 0.0e+0, water at 20 °C · absolute-pressure
- Where a liquid does pull — laminar — Re 1.0e-2, water at 20 °C · absolute-pressure · hero
- Where a liquid does pull — laminar — Re 1.0e-2, water at 20 °C · absolute-pressure
- The margin friction lends a siphon — water at 20 °C — turbulent at Re 21843 · siphon-profile
- The margin friction lends a siphon — water at 20 °C — transitional at Re 3944 · siphon-profile
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost · hero
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost
- The radius that costs least — Re 1200 in every vessel — laminar, so the loss is linear in the flow · branch-cost