TryBuildCalc

Water Supply Fixture Unit Calculator (WSFU, Demand & Pipe Diameter)

Calculate total WSFU and the resulting demand flow rate and pipe size.

Building & System Type

ℹ️Sets which WSFU value applies to each fixture — the same fixture carries a different load in a single home versus an apartment building versus a commercial building.

ℹ️Flushometer-valve systems demand much more flow at the same fixture-unit count than flush-tank systems — select whichever matches most of the water closets/urinals on this pipe segment.

Fixtures

Quick-fill a starting point, then add/remove/edit rows as needed:

Fixture 1

Fixture 2

Fixture 3

Fixture 4

Fixture 5

Fixture 6

Fixture 7

Only fixtures listed for the selected Building/Occupancy Type are shown — up to 30 fixture rows total.

Continuous-Flow Fixtures (Optional)

Hose bibbs and lawn sprinkler zones are continuous-use, not intermittent — per IPC Appendix E they're added directly in GPM here, not as fixture units above.

Pipe Sizing

ℹ️Sets which standard nominal sizes and internal diameters the recommended size is rounded up to.

ℹ️Defaults to 8 ft/s for cold water branches — commonly lowered to around 5 ft/s for hot water piping.

🔧 Recommended pipe size: 1" Copper (Type L)

Total load: 16.2 WSFU → estimated demand 12.1 GPM.

Fixture Unit Load

Lavatory (x2): 1.6 WSFU

Kitchen Sink (x1): 1.1 WSFU

Water Closet (1.6 GPF, Gravity Tank) (x2): 5 WSFU

Bathtub / Combo Bath-Shower (x1): 3 WSFU

Shower (x1): 1.5 WSFU

Clothes Washer (x1): 3 WSFU

Dishwasher (x1): 1 WSFU

Demand Estimate

Building/Occupancy Type: Individual Dwelling Unit

System Type: Predominantly Flush-Tank Fixtures

Total Fixture Units (WSFU): 16.2

Fixture-Unit Demand: 12.1 GPM

Total Estimated Demand: 12.1 GPM

0.76 L/s, 2.75 m³/hr

Pipe Sizing

Pipe Material: Copper (Type L)

Maximum Velocity: 8 ft/s

Required Minimum Internal Diameter: 0.786 in (20 mm)

Recommended Nominal Pipe Size: 1"

Actual ID 1.025 in (26 mm) — velocity at this size: 4.7 ft/s

Design Notes

This is a velocity-limited quick-sizing estimate, not a full hydraulic pressure-loss design. For anything beyond routine residential/light-commercial branch sizing, confirm with a full IPC Appendix E / UPC Table 610.3 pressure-loss calculation accounting for developed length, fittings, elevation change, and available pressure.

Hose bibbs and sprinkler zones are continuous-flow demand, not fixture units — per IPC Appendix E they are excluded from the fixture-unit/demand-curve method and added directly in GPM on top of it.

Approximate results for planning only. Verify with a professional.

Pipe Cross-SectionRecommended: 1" (ID 1.025 in)Required min. ID: 0.786 inDemand: 12.10 GPM at max 8.0 ft/sActual velocity 4.70 ft/s · 16.20 total WSFUDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, or tips and mistakes?See the complete Pipe Sizing by Fixture Units Calculator.

Whole-house WSFU calculation example

This page is set up for a typical single-family house's main service line — 2 lavatories, a kitchen sink, 2 gravity-tank water closets, a bathtub, a shower, a clothes washer, and a dishwasher — giving 16.2 total WSFU (1.6 + 1.1 + 5.0 + 3.0 + 1.5 + 3.0 + 1.0).

Using the flush-tank demand curve, 16.2 WSFU interpolates to an estimated 12.1 GPM peak demand. At an 8 ft/s maximum velocity in Copper Type L, that needs a 0.786 in minimum internal diameter, rounding up to a 1" nominal size (actual ID 1.025 in) — giving an actual velocity of 4.7 ft/s.

  • 7 fixtures across a full house → 16.2 WSFU.
  • Demand: 12.1 GPM.
  • Recommended: 1" Copper Type L (actual velocity 4.7 ft/s).

How Pipe Sizing by Fixture Units Works

The calculation happens in four stages — fixture-unit load, demand flow rate, an optional continuous-flow addition, then pipe diameter.

Step 1 — Total Fixture Unit Load

Row WSFU = Fixture's WSFU value (for the selected Building Type) × Quantity
Total WSFU = Sum of every fixture row's WSFU

Each fixture's WSFU value depends on the selected Building/Occupancy Type — the same fixture is rated lower in a multi-family building than a single-family home, reflecting greater usage diversity across more dwelling units sharing the same riser.

Step 2 — Demand Flow Rate (GPM)

Demand (GPM) = Table lookup + interpolation on Total WSFU, using the Flush-Tank or Flushometer-Valve column

This relationship is deliberately nonlinear — doubling the fixture-unit total does not double the demand flow rate, since the probability of every fixture running simultaneously keeps dropping as the count grows. Flushometer-valve systems draw a much higher flow at the same WSFU total than flush-tank systems, since a flush valve delivers its full flush volume quickly with no tank to buffer the draw.

Step 3 — Add Continuous-Flow Demand (Optional)

Total Demand (GPM) = Fixture-Unit Demand (GPM) + Σ(Continuous-Flow GPM × Quantity)

Hose bibbs, lawn sprinkler zones, and similar continuous-use connections are excluded from the fixture-unit method entirely — per IPC Appendix E, fixture units and the demand curve model intermittent, probability-of-simultaneous-use demand, which doesn't apply to a fixture that can run continuously for an extended period. Their GPM is instead added directly on top of the fixture-unit-derived demand (IPC's own worked example: 2 hose bibbs × 5 GPM = 10 GPM, added to the WSFU-derived total).

Step 4 — Required Pipe Diameter

Required Minimum ID (in) = √(0.4085 × Total Demand (GPM) ÷ Max Velocity (ft/s))
Recommended Nominal Size = smallest standard size for the chosen material whose actual ID ≥ Required Minimum ID

0.4085 comes directly from converting GPM to cubic feet per second and expressing pipe area from a diameter in inches — this is a standard plumbing/HVAC flow-velocity relationship. Since pipe only comes in discrete standard sizes, the required diameter is always rounded up, never down, and the actual velocity at the recommended size (shown in the result) will sit at or below your chosen maximum.

Worked Example

This example uses the active inputs above and follows the same steps as the Formula section.

Input Values Used

InputValue
FixturesLavatory x2, Kitchen Sink x1, Water Closet (1.6 GPF, Gravity Tank) x2, Bathtub / Combo Bath-Shower x1, Shower x1, Clothes Washer x1, Dishwasher x1
Building Type / System TypeindividualDwelling, flushTank
Pipe Material / Max VelocityCopper (Type L), 8 ft/s

Step 1 — Fixture Unit Load

FixtureSubstitutionResult
Lavatory0.8 × 21.6 WSFU
Kitchen Sink1.1 × 11.1 WSFU
Water Closet (1.6 GPF, Gravity Tank)2.5 × 25 WSFU
Bathtub / Combo Bath-Shower3 × 13 WSFU
Shower1.5 × 11.5 WSFU
Clothes Washer3 × 13 WSFU
Dishwasher1 × 11 WSFU
Total WSFU16.2

Step 2 — Demand Flow Rate

CalculationSubstitutionResult
Fixture-Unit DemandTable lookup at 16.2 WSFU (flush-tank curve)12.1 GPM

Step 4 — Required & Recommended Pipe Size

CalculationSubstitutionResult
Required minimum ID√(0.4085 × 12.1 ÷ 8)0.786 in
Recommended nominal sizeSmallest Copper (Type L) size ≥ 0.786 in1" (actual velocity 4.7 ft/s)

Therefore, this 16.2 WSFU load needs approximately 12.1 GPM total, sized to 1" Copper (Type L).

This does not include developed pipe length, fittings, elevation, or available service pressure. Cross-check against the Reference Tables in the complete Pipe Sizing by Fixture Units Calculator.

This page keeps things focused on the calculation above. For the full construction guide — verification checklist, reference tables, usage steps, tips, common mistakes, and limitations.See the complete Pipe Sizing by Fixture Units Calculator.

FAQ

It's a reasonable figure for a house with one full bathroom, a kitchen, and standard laundry appliances. A larger house with multiple bathrooms would have a proportionally higher WSFU total — but because the demand curve is nonlinear, doubling to 2 bathrooms (roughly 32 WSFU) wouldn't double the demand flow rate, only raise it to about 21 GPM.
Each 1.6 GPF gravity-tank water closet is rated 2.5 WSFU, so 2 units contribute 2 x 2.5 = 5.0 WSFU — the single largest contributor on this house's fixture list, exceeding even the bathtub (3.0 WSFU) and clothes washer (3.0 WSFU).