Capsize Screening Formula Calculator

BOKOG · MARINE SCREENING TOOL

Capsize Screening Formula Calculator

Calculate the conventional capsize screening value for a displacement monohull sailboat from its maximum beam and displacement. Use the result as a rough comparison—not as a safety rating or voyage decision.

Two required measurementsImperial or metric inputLocal browser calculation

Calculate the screening value

Use maximum beam and a clearly identified displacement condition.

Use the boat’s widest beam, not beam measured only at the waterline.
Use a reliable value and note whether it represents light, design, or loaded displacement.
INPUTS AND METHOD

How to use the calculator

The result is only as meaningful as the measurements supplied. Compare boats using consistent definitions and loading conditions.

Select the input systemChoose feet and pounds or metres and kilograms. Metric entries are converted before applying the legacy imperial formula.
Enter maximum beamUse the greatest overall beam from a reliable specification rather than estimating from an image or deck plan.
Enter displacementUse a known displacement and record its loading condition before comparing it with another vessel.
THE CALCULATION

Capsize screening formula and units

The conventional formula uses maximum beam in feet and displacement in pounds:

CSF = Beam in feet ÷ (Displacement in pounds ÷ 64)^(1/3)
Why displacement is divided by 64

The historical convention treats 64 pounds as the approximate weight of one cubic foot of seawater. Dividing weight by 64 produces an estimated displaced volume in cubic feet.

Why the cube root is used

The cube root converts the estimated volume into a length-like value. Dividing beam by that value produces the dimensionless screening ratio.

A narrower or heavier boat produces a lower value in this formula. A wider or lighter boat produces a higher value. This arithmetic relationship does not describe every source of stability.

TRY THE DEFAULT EXAMPLE

Worked example

Consider a displacement monohull with a maximum beam of 12 feet and a displacement of 8,000 pounds.

Beam12 ft
Displacement8,000 lb
Displaced volume125 ft³
Cube root5
Calculation12 ÷ 5
CSF result2.40

The value is above the conventional 2.0 screening benchmark. That observation alone does not calculate capsize probability or establish that the boat is unsafe.

READING THE OUTPUT

How to interpret the benchmark

The conventional 2.0 benchmark is best treated as a prompt for further investigation, not as a certification line.

Calculated valueCareful interpretationWhat to do next
2.00 or belowThe boat is at or below the conventional screening benchmark based only on maximum beam and displacement.Review complete stability data, vessel condition, loading, design, and intended operating conditions.
Above 2.00The boat is above the conventional screening benchmark based only on maximum beam and displacement.Investigate why the design produces the value and use more complete stability information before drawing conclusions.
LIMITS OF THE SCREEN

What the number leaves out

Two vessels can receive the same CSF value while behaving very differently because the formula cannot see their geometry, structure, loading, or recovery characteristics.

Hull and deck geometry

Freeboard, hull shape, deck openings, cockpit volume, appendages, and reserve buoyancy are absent.

Weight distribution

Total displacement is included, but ballast location, vertical center of gravity, tank levels, and carried equipment are not.

Righting behavior

The result does not provide angle of vanishing stability, a GZ curve, righting energy, inversion recovery, or downflooding angles.

Operating conditions

Wave shape, wind, damage, watertight integrity, maintenance, loading changes, and seamanship are not represented.

Vessel type

The historical screen is associated with displacement monohull sailboats. Do not transfer the 2.0 benchmark directly to multihulls, dinghies, or powerboats.

Decision scope

Do not use this result alone to approve offshore use, select a voyage, purchase a boat, or replace professional stability information.

QUESTIONS ABOUT THE CALCULATOR

Frequently asked questions

Is a CSF result below 2.0 proof that a boat is safe offshore?

No. It only means the beam-and-displacement result is at or below the conventional screening benchmark. Safety and suitability require much broader information.

Should I use maximum beam or waterline beam?

Use the vessel’s maximum beam for this formula. The input should come from a reliable specification and use a consistent definition when comparing boats.

Which displacement should I enter?

Use the displacement for a known loading condition and record that condition. Light, design, and fully loaded displacement can produce different results.

Can I enter metres and kilograms?

Yes. Select metric units. The calculator converts metres to feet and kilograms to pounds before applying the conventional formula.

Why does this version not calculate ballast ratio or comfort ratio?

Those are separate measures with different purposes and input requirements. Keeping this page focused prevents unrelated results from being mistaken for part of the capsize screening formula.

Does bokog store the measurements I enter?

The calculation is designed to run locally in the browser. The entered measurements are not submitted to a bokog calculation API.

Use the result as the beginning of a stability review

Confirm the boat’s measurements, identify its loading condition, review complete manufacturer or professionally prepared stability information, and consider the actual vessel, route, weather, maintenance, and crew. A simplified ratio cannot make that decision for you.