Data reference · Indexable · screening reference · Generated 2026-09-02 · verify against the governing standard, equipment nameplate or manufacturer manual.

Flex Duct (Screening +1 Size) duct sizing chart

Flex duct sizing chart by airflow at 0.10 inch water-column friction rate, with a transparent screening method.

ACCA Manual DScreening reference0.10 in. w.c. / 100 ft

What this duct sizing chart answers

Flex duct needs extra area because compression, sag and inner-liner roughness add resistance compared with smooth metal.

This page is maintained by the HVAC Calculator Pro Editorial Team. We publish the inputs, calculation basis and limitations so a technician can reproduce the screening result and decide what must be checked in the field. It is a reference aid, not a substitute for the governing code, a licensed designer or the equipment manufacturer's instructions.

Airflow to duct size

screening reference
flex duct (screening +1 size) duct sizing at 0.10 in. w.c. per 100 ft
Airflow CFMSuggested sizeVelocity fpmEstimated friction in. w.c. / 100 ft
1006 in7330.212
1507 in7640.181
2008 in7480.144
2509 in7160.112
3009 in8590.157
40011 in7330.089
50012 in7580.084
60013 in7640.076
80014 in8680.088
100016 in8150.065
120017 in8590.067
160020 in8130.049
200022 in8320.045

Field interpretation

The +1 inch screening rule is deliberately conservative; support spacing and installation quality can matter as much as nominal diameter.

Definitions: Airflow is the design volume in CFM; cross-sectional area links CFM to velocity; velocity is the average air speed in fpm; friction rate is the pressure-loss target per 100 ft; equivalent length converts fittings and transitions into comparable straight-run loss.

Worked example: If the table suggests 8 in. smooth metal, start by checking 9 in. flex and confirm the installed path is fully stretched and supported.

The generated row uses area and target velocity to create a candidate and reports a Darcy-Weisbach friction estimate for round ducts. Rectangular and flex corrections, fittings and the blower pressure budget still require a Manual D worksheet.

How to use this flex duct (screening +1 size) sizing chart

  1. Start with the room or trunk airflow from a load calculation.
  2. Choose a candidate size and record the assumed friction target and velocity.
  3. Add straight-run length, equivalent fitting length, filter, grille and terminal losses before approving the design.

Worked example: A chart row is a candidate dimension, not a guarantee that the installed system will deliver its design airflow.

Record the result with the project address, equipment model, code edition and assumptions. That audit trail is more useful than copying a single number without its conditions.

Continue with the right tool

Use boundary: This chart does not include fitting equivalent lengths, duct heat gain/loss, acoustic limits, altitude correction or a room-by-room Manual J airflow. Verify the longest run with a ductulator or Manual D worksheet.

Data sourceASHRAE duct design references (https://www.ashrae.org/technical-resources/standards-and-guidelines) and ACCA Manual D conventions (https://www.acca.org/standards/technical-manuals); this page uses a transparent target-velocity screening calculation plus a Darcy-Weisbach estimate.
Review statusScreening reference · not approved for final design
Last verified2026-09-02 · regenerate when the source or code edition changes

Common questions

Is this a final Manual D duct size?

No. It is a screening candidate based on airflow, area and target velocity. Final sizing must include friction, fittings, terminals and the blower pressure budget.

Why can two ducts with the same CFM need different sizes?

Shape, roughness, flex compression, fitting losses and the available static pressure change the acceptable size.