Propeller Roughness • Fuel Recovery • Performance Decay • Polishing Cost • Off-Hire • CO₂ Avoided • Payback • NPV • IRR

Propeller Polishing ROI & Fuel Savings Calculator

Turn measured propeller-performance loss into a maintenance decision. Estimate immediate and cycle-average propulsion-fuel recovery, bunker savings, polishing and off-hire cost, CO₂ reduction, payback, NPV and IRR. Advanced mode adds roughness/fouling return, recurring polishing cycles, inspection and underwater-work costs, carbon value, surface-risk allowance and stress testing.

Figures represent
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Need performance decay, recurring polishing cycles, inspection/underwater-work cost, carbon value or surface-repair allowance? Click Advanced above.Simple treats one polishing event and uses the entered smooth-propeller reference plus recovery percentage.
PerformanceRecovered propulsion fuel
EconomicsPayback, NPV & IRR
ThresholdBreak-even polishing recovery

Propeller Performance Baseline

t/day at the operating condition being screened.
t/day propulsion fuel at comparable draft, speed, weather and RPM/power condition.
% of the measured propeller-related fuel penalty expected to be recovered.
days.
currency/day.
years. Simple assumes the recovered savings persist for this screening horizon.
%.

Measured Propeller Performance & Operating Profile

Use weather-normalized vessel data where possible. The tool does not assign a universal fuel-saving percentage to a propeller condition.

Linear planning model for loss of fresh-polish benefit.
months between repeat polishing cycles.
tCO₂/t fuel, editable planning factor.
% of avoided CO₂ economically valued.

Polishing Event & Compliance Cost

Owner planning allowance for blade-edge, surface or coating follow-up; not a predicted repair cost.

Investment Horizon & Stress Cases

Stress the actual decision drivers. Each row recalculates NPV, payback and first-year savings.

CaseFuel price Δ%Recovery Δ ptsPerformance decay months Δ%Polishing cost Δ%

Propeller Polishing Readiness

Engineering / commercial screen: Use weather-normalized vessel performance where possible. Propeller roughness/fouling, cavitation damage, draft, trim, sea state, speed and engine loading all influence observed fuel burn. Advanced performance decay is a user-entered linear planning model, not a biological prediction. Confirm local in-water-polishing restrictions, local underwater-work requirements and coating-maker limitations before scheduling work.
By the ShipUniverse Editorial Team — About Us | Contact