Wood Movement Calculator

A 12-inch flatsawn white oak board changes about 0.17 inch in width for every 4 percentage points of moisture change.

Grain (measured across)
in
%
%
Change in width
0.168in
Final width12.168 in
Percent change1.4 %

Wood only changes dimension below the fiber saturation point (about 30% moisture). Values are averages; individual boards vary.

Show the math

White oak, flatsawn (tangential): S = 10.5% from green to oven-dry
Change = 12 in × (10.5 ÷ 100) × (12 − 8) ÷ 30 = 0.168 in
Final width = 12 + 0.168 = 12.168 in (1.4%)

Rounded the same way as the result above.

How it works

Wood takes on and gives up water with the seasons and changes dimension across the grain when it does. Along the grain it hardly moves. Flatsawn (tangential) movement is roughly twice quartersawn (radial) movement in most species.

Each species has a published shrinkage figure from green to oven-dry. The Wood Handbook treats the change as linear between oven-dry and the fiber saturation point, so multiply the width by the shrinkage, then by the share of that 30-point range your moisture change covers.

Δwidth = width × (S ÷ 100) × (MC₂ − MC₁) ÷ 30 S = green-to-oven-dry shrinkage (%) for the species and grain direction; 30 = fiber saturation point (% MC)

Worked example

A 12-inch-wide flatsawn white oak board moving from 8% to 12% moisture:

  1. White oak, flatsawn (tangential): S = 10.5% from green to oven-dry
  2. Change = 12 in × (10.5 ÷ 100) × (12 − 8) ÷ 30 = 0.168 in
  3. Final width = 12 + 0.168 = 12.168 in (1.4%)
InputValue
SpeciesWhite oak
Grain (measured across)Flatsawn (tangential)
Board width12 in
Starting moisture content8 %
Ending moisture content12 %
ResultValue
Change in width0.168 in
Final width12.168 in
Percent change1.4 %

Shrinkage by species

SpeciesTangential (%)Radial (%)
White oak10.55.6
Northern red oak8.64
Bur oak8.84.4
Sugar (hard) maple9.94.8
Red maple8.24
Silver maple7.23
White ash7.84.9
Green ash7.14.6
Yellow birch9.57.3
Paper birch8.66.3
Black walnut7.85.5
Black cherry7.13.7
American elm9.54.2
Hackberry8.94.8
Shagbark hickory10.57
Black locust7.24.6
Quaking aspen6.73.5
American basswood9.36.6
Eastern cottonwood9.23.9
Yellow-poplar8.24.6
Eastern white pine6.12.1
Red pine7.23.8
Tamarack7.43.7
Douglas-fir (coast)7.64.8
Western redcedar52.4
Balsam fir6.92.9
Show the shrinkage by species table
SpeciesTangential (%)Radial (%)
White oak10.55.6
Northern red oak8.64
Bur oak8.84.4
Sugar (hard) maple9.94.8
Red maple8.24
Silver maple7.23
White ash7.84.9
Green ash7.14.6
Yellow birch9.57.3
Paper birch8.66.3
Black walnut7.85.5
Black cherry7.13.7
American elm9.54.2
Hackberry8.94.8
Shagbark hickory10.57
Black locust7.24.6
Quaking aspen6.73.5
American basswood9.36.6
Eastern cottonwood9.23.9
Yellow-poplar8.24.6
Eastern white pine6.12.1
Red pine7.23.8
Tamarack7.43.7
Douglas-fir (coast)7.64.8
Western redcedar52.4
Balsam fir6.92.9

Shrinkage from green to oven-dry as a percentage of the green dimension, USDA Wood Handbook Table 4-3.

Assumptions and limits

  • Shrinkage is linear in moisture content between 0% and 30%, and 30% is used as the fiber saturation point. The Handbook recommends both when the exact figure is unknown.
  • Shrinkage percentages are of the green dimension, so results are slightly conservative for wood already dried.
  • Board grain is measured across the width. Real boards have mixed ring angles; use the flatsawn value when unsure.
  • Interior equilibrium moisture in the upper Midwest swings roughly from 5–6% in winter heat to 11–12% in humid summer; use your own readings if you have them.

Common questions

How much gap should I leave in a solid wood tabletop?

Run the calculator across the widest moisture swing for your climate, then design the fasteners (figure-8s, buttons, slotted holes) to allow at least that much movement across the width.

Does wood move in length?

Barely. Movement along the grain is roughly 0.1–0.2%, so furniture design ignores it.

Which woods move the least?

Quartersawn stock of stable species such as eastern white pine and western redcedar. Flatsawn white oak, hickory, and maple are the most active.

Sources

  • USDA Forest Products Laboratory, Wood Handbook: Wood as an Engineering Material (FPL-GTR-282, 2021): Table 4-3 (shrinkage green to oven-dry) and the dimensional-change method in Chapter 4, which uses 30% MC as the fiber saturation point when it is not known.

Updated 2026-09-30