HVAC · Air side

Duct Size Calculator

An air duct and ductwork calculator: enter the airflow and a friction rate; get the round and rectangular duct size, the velocity, and the friction loss. Equal-friction method (ACCA Manual D / ASHRAE), galvanized steel, standard air. Every size is computed from the Darcy-Colebrook duct model on each build, not looked up from a hand-typed grid.

Field brief
400 / 800 CFMAt 0.08 in. wc per 100 ft, 400 CFM needs a 11 in round duct and 800 CFM needs an 14 in. 1,200 CFM needs 16 in.11/14 in
Branch runoutA 100 CFM room runout is a 7 in round duct at the same rate. Step up a size for returns to keep velocity and noise down.7 in
MethodEqual friction: the smallest standard duct whose friction loss at your CFM stays at or under the target rate. Rectangular equivalents share the same equivalent diameter.0.08 in. wc
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Round Duct Size by CFM (0.08 in. wc/100 ft)

Round duct size by airflow, equal-friction method at 0.08 in. wc per 100 ft (galvanized steel, standard air). Smallest standard round size at or under the target rate. Source: ASHRAE / ACCA Manual D equal-friction sizing, computed from the Darcy-Colebrook duct model.
Airflow (CFM)Round sizeVelocity (fpm)Friction (in. wc/100 ft)
505 in3670.058
756 in3820.050
1007 in3740.039
1508 in4300.043
2008 in5730.072
30010 in5500.051
40011 in6060.054
60012 in7640.074
80014 in7480.059
1,00015 in8150.063
1,20016 in8590.064
1,60018 in9050.061
2,00020 in9170.055

Each row is the smallest standard round size whose friction loss stays at or under 0.08 in. wc per 100 ft at that airflow, with the velocity it runs at. Sizes are galvanized steel in standard air. For rectangular duct, match the equivalent diameter with the calculator above.


The equal-friction formula

Friction loss per 100 ft = (12 × f × L / D) × ρ × (V / 1097)², where f is the Colebrook-White friction factor at galvanized absolute roughness ε = 0.0003 ft, D is the diameter in inches, ρ is standard air density 0.075 lb/ft³, and V is velocity in fpm (ASHRAE Fundamentals duct-friction chart). Velocity V = CFM / cross-sectional area. Rectangular to round: De = 1.30 × (a × b)0.625 / (a + b)0.25 (ASHRAE Fundamentals 21.3.1). The sizer steps up standard sizes until the friction loss meets your target.


Duct Size Calculator FAQs

What size duct do I need for 400 CFM?

A 11 in round duct carries 400 CFM at the common 0.08 in. wc per 100 ft friction rate (galvanized, standard air). That is roughly one ton of cooling airflow at 400 CFM per ton. At a looser 0.10 in. wc/100 ft you can drop a size; a rectangular duct with the same equivalent diameter carries the same airflow at the same friction.

What size duct for 800 CFM?

An 14 in round duct carries 800 CFM at 0.08 in. wc per 100 ft. Returns and trunks are often run a size larger to keep velocity and noise down. Use the calculator to see the exact velocity and to read off rectangular equivalents for a tight joist bay.

How do I calculate duct size from CFM?

Duct size comes from the equal-friction method: pick a friction rate (0.08 in. wc per 100 ft is the residential default), then find the smallest standard duct whose friction loss at your CFM stays at or under that rate. Friction loss is (12 f L / D) x density x (velocity/1097) squared, with the friction factor f from the Colebrook-White equation at galvanized roughness 0.0003 ft. This calculator solves it for you and gives the round size, the velocity, and the rectangular equivalent.

What is a good friction rate for residential duct design?

0.08 in. wc per 100 ft is the standard residential design target, and ACCA Manual D Appendix 3 tables are built on it. The usable range is about 0.06 to 0.10 in. wc per 100 ft: lower means larger, quieter ducts, higher means smaller ducts and more noise. Your actual friction rate is available static pressure times 100 divided by total effective length.

What CFM does a 6 inch round duct carry?

A 6 in round duct carries roughly 90 CFM at 0.08 in. wc per 100 ft before it needs to step up to 7 in. Push more air through it and the velocity and friction climb past the residential target, which is where duct noise starts. The chart on this page lists each round size against the airflow it carries.

Is round or rectangular duct better, and how do I convert between them?

Round duct moves air with less friction and material for the same airflow, but rectangular fits flat in joist bays and above ceilings. To convert, match the equivalent diameter: De = 1.30 times (a times b) to the 0.625 power, divided by (a plus b) to the 0.25 power (ASHRAE Fundamentals 21.3.1). The calculator prints the rectangular sizes whose equivalent diameter matches the round size it recommends.


Convert a shape, or jump to a common size

Have a size already and need the other shape? The round-to-rectangular converter matches equivalent diameters both ways. Or open the reference page for a common airflow or duct size:


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