hydraulics / closed conduits

Manning full circular-pipe calculator.

Estimate the full-flow discharge capacity and mean velocity of a circular pipe from its internal diameter, friction slope, and Manning roughness.

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Closed conduit geometry is still visible.

For a circular pipe flowing full, the cross-sectional area is πD²/4 and the hydraulic radius is D/4. Manning's relationship then estimates a mean velocity from the roughness and friction slope; multiplying velocity by area gives discharge capacity.

Governing equation

A = πD²/4, R = D/4, and Q = (1/n) A R2/3 S1/2.

The full-flow Manning form and circular-pipe hydraulic radius are described in FHWA culvert guidance.

Capacity is not a system result.

  • Check whether the pipe is actually flowing full and whether the hydraulic grade line, tailwater, air, and surcharge conditions allow that state.
  • Include entrance, exit, bend, junction, grate, trash, and barrel losses, plus sediment, blockage, maintenance, and minimum-velocity requirements.
  • For partially full flow, solve the circular-segment geometry at the selected depth instead of using A = πD²/4 and R = D/4.