Hydraulics Interactive engineering tool

Piping Fitting and Valve Losses Calculator

Determine head loss through a pipe fitting or valve from flow rate, pipe inside diameter, and loss factor K, or enter any three variables to solve for the fourth.

  • US + metric
  • Formula shown
  • Shareable results

Piping Fitting and Valve Losses

ft
gpm
in
Head loss 0.45 ft (length of flowing fluid)
Average pipe velocity 5.67 ft/s
Velocity head (V²/2g) 0.5 ft
Pipe flow area 28.3 in²
Formula & method

HL = K · V²/(2g)  ·  V = Q/(πD²/4)

A = π · 6² / 4 = 28.3 in²
V = 500 gpm / A = 5.67 ft/s
HL = 0.9 · V²/(2g) = 0.45 ft

K is dimensionless. Enter a sum of K values only when the components share the same pipe diameter and velocity. Head loss is length of the flowing fluid and is independent of density when expressed as head.

Use actual pipe inside diameter. Published K values are approximate and can vary with size, geometry, construction, Reynolds number, and valve position; use manufacturer data when available.

This calculator determines the head loss caused by a pipe fitting or valve. Enter any three of head loss, flow rate, actual pipe inside diameter, and loss factor K to calculate the fourth.

The formulas

The minor-loss relation is HL = K · V²/(2g), where V = Q/A and the circular pipe area is A = πD²/4. Head loss is expressed as length of the flowing fluid, so the calculation does not require fluid density or specific gravity.

Solve in any direction

  • Head loss (HL) — the energy loss through the fitting or valve at the specified flow.
  • Flow rate (Q) — the flow corresponding to a known loss, diameter, and K factor.
  • Pipe inside diameter (D) — the diameter consistent with the known flow, loss, and K factor.
  • Loss factor (K) — the resistance coefficient implied by a known operating point.

Use actual inside diameter

D is the pipe’s actual internal diameter, not merely its nominal pipe size. Because velocity varies with 1/D² and head loss with 1/D⁴ at fixed flow and K, even a modest diameter error can materially change the answer.

Combining fittings

For several fittings in the same pipe diameter carrying the same flow, add their coefficients and enter ΣK. The combined loss is HL = ΣK · V²/(2g). If the components have different diameters or velocities, calculate each group separately and add the resulting head losses.

K-factor references

The Goulds Pump Manual TECH-C-2 presents two classic resistance-coefficient chart groups, reproduced from the Hydraulic Institute Pipe Friction Manual. Current Hydraulic Institute versions are available as typical K factors for fittings (Chart 1) and typical K factors for valves and additional fittings (Chart 2). The surrounding method and cautions are in the HI Data Tool minor-loss reference.

Published K values are estimates. They vary with nominal size, thread or flange construction, bend radius, Reynolds number, valve design, and valve opening. Use manufacturer data for a specific valve or fitting whenever available; partially closed control valves require operating-position data rather than a fully-open table value.

Worked example

At 500 gpm through a 6 in inside diameter, velocity is approximately 5.67 ft/s and velocity head is 0.500 ft. A standard 90-degree elbow represented by K = 0.9 therefore produces about 0.450 ft of head loss (0.137 m).

Variables

Symbol Meaning US unit SI unit
HL Head loss through the fitting or valve ft of fluid m of fluid
Q Volumetric flow rate through the corresponding pipe gpm m3/h
D Actual pipe inside diameter in mm
K Dimensionless resistance or loss coefficient - -

Standards referenced

Hydraulic Institute Pipe Friction Manual and HI Data Tool minor-loss relation Goulds Pump Manual TECH-C-2 charts 1 and 2 NIST SP 811 unit definitions

Verified Constants and formula two-source checked (PumpCalcs engineering review, 2026-08-25).

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