EASA/GCAA Part-66 · Module 2 — Physics · Fluid Dynamics

Bernoulli & the Venturi

Objective: force a fluid through a narrowing (a venturi). By continuity the fluid speeds up in the throat, and by Bernoulli its static pressure falls — the manometer standpipes make the pressure drop visible. This is how a carburettor venturi draws in fuel.

Venturi tube — flow, pressure field & manometers

Velocity & static pressure along the tube

Inlet velocity V₁
0m/s
Throat velocity V₂
0m/s
Inlet static P₁
0kPa
Throat static P₂
0kPa
Continuity: A₁V₁ = A₂V₂  ·  Bernoulli: P + ½ρV² = constant

By continuity, the same volume must pass every cross-section each second, so where the tube narrows the fluid must speed up (A·V is constant). By Bernoulli, the total of static + dynamic pressure is constant along a streamline, so where the velocity is high the static pressure is low. The standpipes are manometers reading static pressure: watch the throat column fall as the flow accelerates. A carburettor exploits exactly this low-pressure throat to draw fuel into the airstream.