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Predicted vital capacity calculator

Expected lung vital capacity for a healthy adult, from height, age and sex.

Published 8 August 2026 · Updated 22 September 2026

What this calculator does

Spirometry results mean little in absolute terms, because a tall young person and a short older one should not have the same lung volume. Predicted values give the reference a measurement is compared against.

Age is the term that moves. At 175 cm, a predicted vital capacity falls from 4,443 mL at age 20 to 3,267 mL at age 80, a reduction of about a quarter that is entirely normal.

The formula

FormulaMen: VC = height(cm) × (27.63 − 0.112 × age). Women: VC = height(cm) × (21.78 − 0.101 × age)

Height in centimetres is multiplied by a coefficient that declines with age, with separate constants for men and women. The result is the expected vital capacity in millilitres.

TermMeaning
Vital capacityThe maximum volume that can be exhaled after a full breath in.
Predicted valueThe expected figure for someone of that height, age and sex.
Per cent predictedA measured value expressed against the prediction, which is how results are reported.

The inputs explained

FieldWhat to enter
Height (cm)Height in centimetres, the strongest predictor of lung volume.
Age (years)Age in years. Vital capacity declines steadily through adult life.
SexSex, which selects the coefficients.

When to use it

Interpreting a spirometry result

A measured volume only means something against what would be expected.

Understanding normal decline

Lung volume falls with age in healthy people, which the prediction accounts for.

Comparing across people

Per cent predicted puts two very different bodies on a common scale.

Worked examples

Every figure in the tables below is produced by this page’s own calculator at build time, so the numbers and the tool always agree. Select any row to load that scenario.

How much does age reduce the expectation?

The same height at four ages.

175 cm male
AgePredicted vital capacityIn litres
20 years4,443 mL4.44 L
40 years4,051 mL4.05 L
60 years3,659 mL3.66 L
80 years3,267 mL3.27 L
At 20 the prediction is 4,443 mL and at 80 it is 3,267 mL, a fall of about 26 per cent across sixty years. Nothing about the person has gone wrong; this is the expected trajectory.

Questions

Why does lung capacity decline with age?

Chest wall stiffness increases, respiratory muscles weaken and lung elastic recoil is lost. All three reduce the volume that can be moved, and the decline is gradual and universal.

Are these equations current?

No. The Baldwin equations date from 1948 and modern laboratories use newer reference sets such as GLI-2012, which draw on much larger and more diverse populations. Expect a laboratory report to differ from this figure.

What is per cent predicted?

A measured value divided by the predicted one. Around 80 per cent and above is generally treated as within normal limits, though modern practice increasingly uses a statistically defined lower limit instead.

Does this account for ethnicity?

Not at all, and that is a known limitation of older equations. Modern reference sets handle population differences explicitly, and how they should do so remains actively debated.

For airflow obstruction from the same test, see the FEV1/FVC ratio calculator. For air moved per minute, see the minute ventilation calculator.