MechanicalIntermediatePumps

Pump Efficiency Calculator

Calculate pump efficiency by dividing hydraulic output power by measured shaft input power.

Why it matters: Pump efficiency must use the same operating point, fluid properties, and shaft-power boundary.

User inputs

Enter field measurements

5 inputs
Select I-P or SI units. Numeric entries are converted when the selection changes.
gpm or L/sRepresentative measured liquid flow.
ft or mMeasured total dynamic head.
ratioSpecific gravity at the measured condition.
hp or kWMechanical input power at the pump shaft.

Calculated result

Engineering evaluation

Physically plausible screen
Calculated pump efficiency (ηp)67.34 %
Hydraulic liquid power (Whyd)
10.1 water hp
Entered shaft power (Wshaft)
15 hp
Unconverted power fraction (1−ηp)
32.66 %

Engineering interpretation

Calculated pump efficiency is 67.34%. Compare the result with the current manufacturer curve at the measured flow, speed, impeller, and fluid condition.

Motor-driven equipment

Estimate electrical demand and energy use

Use nameplate information and an operating schedule to screen motor input power, current, annual energy, and operating cost. Results update automatically.

Optional companion calculation
Choose the motor nameplate output-power convention.
Rated shaft output, not electrical input.
Used to estimate current; it does not change the hp-based energy result.
Use efficiency at the evaluated load point when available.
Use measured or defensible operating load rather than motor nameplate size alone.
Used only for the estimated current calculation.
Assumes all selected motors operate concurrently at the entered load.
Replace the profile with the actual occupied, process, or control schedule.
$/kWh
Use the applicable marginal utility energy charge; demand charges are not included.

Estimated result

Total motor input power (Pin,total)6.21 kW
Current per motor (I)
9.18 A
Total coincident current (Itotal)
9.18 A
Daily energy (Ed)
50 kWh/day
Annual operating hours (Hy)
2,080 h/year
Annual energy (Ey)
12,925 kWh/year
Annual energy cost (Cy)
$1,551/year

Equations and assumptions

Nameplate-based screening method

Pin=PratedLηmI=1000Pin3VPFEy=NPinhddyCy=Eyce

Horsepower is converted using 1 hp = 0.7457 kW. This estimate assumes steady average load and the entered operating-point efficiency. Voltage and power factor affect estimated current, but hp, load, efficiency, quantity, and schedule establish the energy estimate. VFD speed profiles, cycling, standby power, demand charges, and process variation require separate evaluation.

Technical basis: U.S. Department of Energy — Determining Electric Motor Load and Efficiency

Engineering knowledge center

Understand the calculation—not just the answer

2026-08-07 · Free Library
Governing relationships
Whyd = QH·SG/3960
ηp = Whyd/Wshaft×100
1−ηp = 100−ηp
Current substitution

ηp = 10.1/15×100 = 67.34%.

Calculation sequence

Step-by-step method

  1. Calculate hydraulic output power.
  2. Confirm shaft input power uses the same operating point.
  3. Divide hydraulic power by shaft power and multiply by 100.

Equation legend

Inputs and calculated quantities

Q
Pump flow — gpm or L/s
H
Pump head — ft or m
SG
Fluid specific gravity — ratio
Wshaft
Measured shaft power — hp or kW
ηp
Calculated pump efficiency — %
Whyd
Hydraulic liquid power — water hp
Wshaft
Entered shaft power — hp
1−ηp
Unconverted power fraction — %

Engineering calculation disclaimer

These engineering tools are provided for educational, preliminary evaluation, field verification, and commissioning support. Results depend on the accuracy of user-entered information and the assumptions stated for each calculation. Every colored status and comparison is a screening indicator only; project criteria, contract requirements, applicable codes, manufacturer instructions, measurement uncertainty, and authorized engineering judgment govern. The tools do not replace project-specific engineering analysis or the judgment of a licensed professional engineer.

Read the full use and limitation statement