Poiseuille flow — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The fourth power in a pipe
Halve a pipe's radius and the flow through it falls to a sixteenth. The exponent is four rather than two, because narrowing a pipe both removes cross-section and slows what is left — and one law with that exponent in it governs a blood vessel, a hypodermic needle and a water main.
The pore that lifts highest fills slowest
Jurin's law says how high water climbs in a tube and nothing about how long it takes. The rise has three laws in succession — the column's inertia, then its viscous drag, then its weight — and the same narrowness that lifts water highest throttles it hardest, so for any deadline there is a best pore. A wide enough tube does something Jurin's law cannot: it overshoots and rings. And whatever the route, exactly half the energy the surface releases is lost.
Named alongside it
The objects these essays reach for when they reach for this one.
ViscosityCapillary riseCritical dampingDissipationFlow resistanceInertiaJurin lawNo slipPressureScalingShear stressSurface energy