Reference

Reference · Tiles

TILEVENTED · BANDPASSM/S

Port Velocity

How fast air moves through the port, at its peak, at each frequency. High air speed increases the risk of chuffing and whistles, so this is the tile to size a port with.
Shows
Peak air speed in the port, in m/s, at each frequency, against the warning line.
Healthy when
The curve stays under the line at the power you will actually use.
If it is not
More port area, less power, or a high-pass below the tuning.

The tile#

Port Velocity

m/s

  • One 10 cm port28.4 m/s at 30 Hz
Ciare 12.00SW in the 55 L vented example tuned to 32 Hz, at 200 W, half space, 1 m. Simulated when this page was built.

In this example the port peaks at 28.4 m/s near 30 Hz, over the 17 m/s line. Each visible enclosure with a port draws its own curve in its colour; the dashed line is the port velocity warning, and the same value shows in the tile's header.

  • Open this example in the simulator at 200 W, then hover the curve for the speed at a frequency.
  • Click the warning value in the tile header to change the line. It is the same setting as Port velocity under Settings › Simulation…, from 10 to 30 m/s.
  • Bandpass boxes show their front port here. A sixth-order bandpass has a second, rear-chamber port on its own tile, Port Velocity (Rear Chamber).

How to read it#

  • Read it at the power you plan to use. Air speed follows the drive, so a port that is fine at 10 W can chuff at 200 W.
  • The peak sits near the box tuning, where the port does most of the work and the cone the least.
  • Inspect speeds throughout the band your signal reaches. The line is a warning threshold, not a promise that a real port is quiet below it.
  • 17 m/s is the default warning, not a universal noise threshold. A well-flared port can run faster before you hear it; the settings hint says 15 to 20 m/s is typical and higher for flared ports.

Three port-area choices#

The same 55 L box and driver at 200 W, with three ports that all keep the 32 Hz tuning.

Two 10 cm ports

UNDER

Port Velocity

m/s

14.2 m/s · each 77.1 cm long

One 10 cm port

OVER

Port Velocity

m/s

28.4 m/s · 35.6 cm long

One 7.5 cm port

FAR OVER

Port Velocity

m/s

50.5 m/s · 18.9 cm long

What moves it#

ChangeEffectWhy
Halve the power× 0.71Air speed grows with the square root of power.
Double the port area× 0.50Same air, twice the opening. The port gets longer to keep the tuning.
Lower the tuningPeak moves downAnd the port gets longer for the same area.
High-pass below the tuningLower peakThe cone moves less air near the tuning.

What to try#

TryWhat it changes
More port areaA second port, or a wider one, halves the speed for twice the area. Each port gets longer to keep the tuning.
Less powerAir speed follows the square root of power: half the power is about 0.7 times the speed, and 3 dB quieter.
A high-pass below the tuningThe cone moves less air near the tuning, so the port does too.

Ask your AI#

Ask your AI

Your assistant runs the same solver on your own designs through the 00 Simulator connector.
Using 00 Simulator, check every vented box in my open workspace at its set power. For any port above 17 m/s, try two ports and a larger diameter without saving, and tell me each option’s peak air speed and port length.
or open it inClaudeChatGPT

Connect your assistant so it can open your designs.