Laundry Room Ventilation Calculator

Laundry Room Ventilation Calculator

Estimate laundry room exhaust fan CFM, make-up air door gap, humidity clearing time, and fan runtime from room volume, target ACH, dryer moisture load, and sensor response.

🧺 Laundry room presetsEach preset fills eight editable ventilation inputs.
📏 Ventilation inputsUse internal room dimensions and the moisture released into the room, not total dryer vent flow.
Inside wall-to-wall length of the laundry room or closet.
Inside clear width used for room volume and air-change math.
Use average height for sloped or soffited laundry spaces.
Use 6 to 8 for normal rooms, 10 to 14 for humid or closet-like rooms.
Vented dryers may be low; condenser or door-open drying can be higher.
Daily average load count used for fan runtime and moisture load.
Door width converts needed make-up air area into an undercut height.
Applies margin to the fan CFM target after the ACH calculation.
Exhaust fan size
0
CFM target
Make-up air gap
0
sq in free area
Humidity clearing time
0
minutes
Fan runtime
0
minutes/day
⚙ Formula checkpointsCore assumptions used by the calculator.
ACH Air exchange Fan CFM starts with room volume multiplied by target air changes per hour.
1.08 lb per pint Dryer moisture load is translated into pints for humidity planning.
2 CFM Door gap speed Make-up air area assumes about 2 CFM per square inch of free door gap.
3 ACH Clearing target Clearing time estimates three room air turnovers after laundry moisture spikes.
🔄 Ventilation comparisonSame room can behave very differently by dryer type and air path.
Vented dryer roomLow spill moisture when the dryer duct is tight, but the room still needs fan air for heat and lint-prone humidity.
Condenser dryer roomMore room-side moisture and longer tail, so clearing time and post-cycle runtime matter more than peak CFM alone.
Closet laundrySmall volume changes fast; use higher ACH and confirm a real make-up air gap around the door.
Mudroom laundryWet coats and shoes add background moisture, so daily fan runtime can exceed dryer-cycle-only runtime.
📊 Dynamic calculation tablesThese update after each calculation.
Ventilation formula stack
StepFormulaResultUnit
VolumeL x W x H0cu ft
Base CFMvolume x ACH / 600CFM
Fan targetbase x margin0CFM
Gap areaCFM / 2 per sq in0sq in
Moisture and runtime
MeasureFormulaResultUnit
Moisturelb/load x loads0lb/day
Pintslb / 1.0430pt/day
Clear time3 x volume / CFM0min
Runtimeloads x clear0min/day
📋 Reference tablesUse these ranges to choose realistic inputs.
ACH planning ranges
Room conditionTarget ACHBest useWatch item
Large open utility5-6Low humiditySlow response
Normal laundry room6-8Daily loadsDoor gap
Closet laundry9-12Small volumeHeat buildup
Humid climate10-14Wet weatherLong runtime
Mudroom combo8-12Damp storageBackground RH
Door undercut free area
Door width1/2 in gap3/4 in gap1 in gap
24 in12 sq in18 sq in24 sq in
28 in14 sq in21 sq in28 sq in
30 in15 sq in22.5 sq in30 sq in
32 in16 sq in24 sq in32 sq in
36 in18 sq in27 sq in36 sq in
🏠 Room examplesCommon ventilation starting points before custom dimensions.
Example room sizes
SpaceVolumeACHBase CFM
Laundry closet240 cu ft1040 CFM
Apartment room384 cu ft851 CFM
Standard room640 cu ft885 CFM
Family room960 cu ft9144 CFM
Utility room1440 cu ft6144 CFM
Formula reference
OutputFormulaUnitMeaning
Room volumeL x W x Hcu ftAir volume
Target ACHuser input1/hrAir changes
Fan CFMvolume x ACH / 60CFMAirflow
Make-up gapCFM / 2sq inFree area
Fan runtimeloads x clear timemin/dayDaily run
💡 Calculation tipsTwo practical checks for smarter ventilation inputs.
Air path tip: A fan cannot move its rated CFM without make-up air. If the calculated undercut is large, split the free area between the door gap, grille, or transfer path.
Sensor tip: Humidity sensors work best when the fan runs past the first spike. Compare clearing time with real dryer cycles and use the runtime output as the minimum post-cycle target.

Because most folks consider their laundry room a closet for folding, it becomes a box with a washer/dryer/shelf, and they’re done with it. Thing is, dryers is little steam-generating machines; each time you use one, you blast hot wet air inside that closed-off area. Without some way for that moisture to escape, it’ll saturate the drywall, the ceiling joists and slowly migrate through walls into adjacent rooms. Moisture does not care about your house’s layout; it moves, and if there’s no way out, you’re gradually paying a silent mold-cleanup fee.

Once you estimate your moisture load (the amount of water that will be added to the room) and plug your room dimensions into the calculator (above), the tool does the math, and removes the guessing game by working exclusively in air changes per hour, or ACH. This is the core of indoor air quality, and indicates how many times, in an hour, the entire volume of air in a given room are entirely replaced. Two or three changes is typically fine for a living room, but not so much for a laundry room. In fact, the tool bases its calculations around six to eight ACH as a starting point for most rooms, moving up to ten or even higher for humid climates or closets. And that’s key, because a closet fills with humidity quickly, while a large space require more inertia to move; yet they both need it to happen, just at different speeds.

How to Keep Your Laundry Room Dry and Safe

The second half of this equation is the make-up air. That’s what many people fail to think about. You can’t suck air out of a room without letting some new air in. Because fans do cause a slight negative pressure, they’ll struggle to pull air out of the room into the duct unless there’s replacement air coming into the room from the hall. The calculator takes the fan’s CFM and estimates how much space you’d need under the door to ensure enough free area. (It calculates roughly two cubic feet per minute for each square inch of open space.) If the number it spits out for your door undercut is huge, consider a dedicated transfer grille instead. Remember: Air goes where it wants; build the path of least resistance.

You also need to consider the dryer type. Traditional vented dryers move most of the moisture out to the exterior, but still deposit some residual heat and humidity into the room. Heat pump/condenser dryers recycle air (leaving more humidity in the laundry space) so you can adjust the moisture load per load in the calculator, it’ll take into account that differance. You’ll probably want to run your fan longer and target a higher ACH if you’re on a condenser unit. And again it’s not only about peak, it’s about time; a weak fan running a while might actually clear the air better then a powerful fan that turns off too quickly. The tool will estimate how long it takes for the fan to clear the air of its spike after the cycle.

As important as what kind of hardware you have is how you use it, your daily habits. What kind of loads do you run? How many loads? Do you only run synthetic loads? Wet towels? If you only run the dryer with a towel for a few minutes at most, that’s not going to clear the air quickly. Even five minutes won’t clear it very fast if you’re running three loads a day. The humidity builds up over multiple cycles. The calculator multiplies your daily load count by the clearing time to help you figure out how long you need to run the fan each day. This is where the daily number of loads come into play. The calculator will multiply your daily load count by its clearing time, which can be read from the chart. This gives you a total runtime for each day to help you figure out what timer or fan controller you should of get.

A big utility room will require a lot more rapid air exchange than a closet sized laundry area, and the reference table on the page makes that crystal clear. The condition of the ductwork is another thing that’s easy to overlook but makes all the difference. Long duct runs, elbows and restrictive grilles will eat up your CFM, but a short, straight duct move air quite efficiently. This is also reflected by the calculator via a margin factor; the messier your ducting, the more the tool compensates by increasing the target fan size. It doesn’t sound like much, but it does matter, so you don’t end up buying a fan that sounds like a jet engine simply because air got stuck in a kinked pipe. Keep the path smooth and short.

In sum: You need to take the moist air away but not so much as to pull hot air from your house (or create a draft bringing in cold air). Ultimately, it’s all about balance. Your nose tells you the final answer but the numbers is a place to start. Once you get the fan dialed-in properly, if the room still has a damp smell, then adjust the door gap. If the fan is too loud, then inspect the duct. Let the air tell you what it wants and when you let it out, let it replace itself and that’s how you’ll have clean air and dry walls.

Laundry Room Ventilation Calculator

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