Velocity and Hazen-Williams friction loss by flow for DN65 pipe. Loss values are in bar per 100 m, calculated on an internal diameter of roughly 62.7 mm.

Typical use: Distribution and intermediate risers.

Velocity and friction loss table (DN65)

Flow (L/min)Velocity (m/s)C=100C=120C=140
500.270.0300.0210.016
1000.540.1070.0760.057
1500.810.2260.1620.121
2001.080.3850.2750.207
3001.620.8160.5820.438
4002.161.3900.9920.746
6003.242.9422.1001.579
8004.325.0093.5752.688
12006.4810.6067.5695.691
16008.6418.05912.8889.691

The C factor represents internal pipe roughness. Standards give different C values by pipe material and system type; a lower C for dry systems is common.

The calculation

Hazen-Williams in metric form: p = 6.05 × 105 × Q1.85 / (C1.85 × d4.87), where p is bar/m, Q is L/min and d is the internal diameter in mm.

The relation has two consequences:

Internal diameter matters, not nominal size. The table values assume an internal diameter of roughly 62.7 mm. Pipes of a different wall thickness have a different bore and a correspondingly different loss; a precise calculation must use the pipe's own technical data.

Velocity check

High velocity brings noise, water hammer and long-term erosion. The velocity column lets you see at a glance whether the chosen size stays in a reasonable range. Where the velocity comes out too high, the answer is a larger diameter.

How to use it

  1. Determine the flow through this pipe section in the hydraulic calculation.
  2. Read the bar per 100 m loss from the table at the appropriate C value.
  3. Scale it to the actual length of the section.
  4. Add the equivalent lengths of fittings and valves.
  5. Add the elevation difference as static pressure.

Frequently Asked Questions

What C factor applies to DN65 pipe?

The value the standard gives for the pipe material and system type. The table has separate columns for C=100, 120 and 140; a lower C for dry systems is common.

What happens to the loss if flow doubles?

It rises by roughly 3.6 times (2^1.85). Flow increases therefore affect loss more than expected.

Is the nominal size the same as the bore?

No. The table assumes an internal diameter of roughly 62.7 mm; a different wall thickness changes the bore and the loss.

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Standards & References

NFPA 13 (2025) · BS EN 12845:2015+A1:2019. Values are calculated from Hazen-Williams using an approximate internal diameter; a precise calculation must use the pipe's technical data and the C factor the standard requires.

FS

Fatih Selvi

Mechanical engineer and software developer. 16+ years of MEP and fire protection field experience.