TryBuildCalc

Kitchen Air Conditioner BTU Calculator (Cooking-Appliance Heat Adjustment)

Size your kitchen AC instantly.

Inputs

Unit Type
Calculation Mode
ftΒ²

ℹ️Measured floor area of the single, enclosed room this unit will cool β€” not a multi-room open floor plan.

ft

ℹ️Energy Star's sizing chart assumes an 8 ft ceiling. Taller rooms hold more air and may need a larger unit than shown.

β–Ύ

ℹ️Very sunny rooms need +10% capacity; heavily shaded rooms need 10% less, per Energy Star's guidance.

Is This a Kitchen?

ℹ️Adds 600 BTU for each person beyond a baseline of 2 who regularly uses this room.

Recommended Capacity

10,000 BTU/hr

Match against the unit's nameplate/CEER BTU rating

Room & Conditions

Unit type: Window / Through-the-Wall

Room area: 250 sq ft

Sun exposure: Average / Typical

Kitchen: Yes

Occupants: 2

Sizing Breakdown

Base capacity (area only): 6,000 BTU/hr

After adjustments: 10,000 BTU/hr

Recommended nominal size: 10,000 BTU/hr

Window / Wall Air ConditionerRoom area β†’ adjustments β†’ recommended BTU250 sq ft roomWindow / Wall UnitRecommended Capacity10,000 BTU/hrIllustrative β€” not to scale. Planning estimate only.

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Window/Portable AC BTU Calculator.

Kitchen air conditioner sizing

A range, oven, and other cooking appliances add real, sustained heat gain beyond what a kitchen's floor area alone accounts for β€” Energy Star's sizing guidance adds a flat 4,000 BTU for kitchen use specifically to cover this.

This page defaults to a 250 sq ft kitchen with the kitchen adjustment applied β€” edit the inputs above to match your actual space.

Window/Portable AC Formula: How Is It Determined?

Sizing starts from Energy Star's official area-to-BTU chart, applies three independent adjustments, then rounds up to the next real, purchasable unit size β€” with an additional SACC/ASHRAE step for portable units only.

Base Capacity from Room Area

Area = Room Length Γ— Room Width, or your entered known area

Base BTU/hr = Energy Star sizing chart lookup for your room's floor area (assumes an 8 ft ceiling)

Energy Star publishes an official chart mapping room floor area directly to a base cooling capacity in BTU/hr, ranging from 5,000 BTU for a 100-150 sq ft room up to 34,000 BTU for a 2,000-2,500 sq ft room. This chart explicitly assumes an 8 ft ceiling β€” Energy Star gives no official numeric adjustment for taller rooms, only a qualitative note that more capacity may be needed, which this calculator surfaces as a warning rather than an invented multiplier. You can enter a known area directly, or switch Calculation Mode to compute it from the room's length and width instead β€” both feed the exact same chart lookup.

Sun, Kitchen, and Occupancy Adjustments

Sun adjustment = Base BTU Γ— (+10% very sunny, 0% average, βˆ’10% heavily shaded)

Kitchen adjustment = +4,000 BTU flat, if the room is a kitchen

Occupancy adjustment = +600 BTU Γ— occupants beyond a baseline of 2

Adjusted BTU = Base BTU + Sun Adjustment + Kitchen Adjustment + Occupancy Adjustment

These three adjustments come directly from Energy Star's own published sizing guidance, applied on top of the area-based base capacity. Sun exposure and kitchen use both address real, sustained heat gain sources the floor area alone doesn't capture; the occupancy adjustment accounts for body heat from more than the typical 2 people the base chart assumes.

Recommended Nominal Size

Recommended BTU = next available nominal unit size on the sizing chart β‰₯ Adjusted BTU

The adjusted BTU figure is rounded UP to the next real, purchasable unit size on Energy Star's own chart β€” never down β€” since a unit smaller than the actual need runs continuously without ever comfortably reaching the target temperature during peak heat.

Portable Units Only: Estimated ASHRAE-Label Range

Estimated ASHRAE low = Recommended BTU Γ· hose type's maximum SACC/ASHRAE ratio

Estimated ASHRAE high = Recommended BTU Γ· hose type's minimum SACC/ASHRAE ratio

Portable units are dual-rated: SACC (Seasonally Adjusted Cooling Capacity, the DOE-mandated figure reflecting real delivered cooling) and the older ASHRAE BTU figure, which doesn't account for the exhaust hose's infiltration effect and is typically higher. Since SACC is typically 55-71% of ASHRAE for single-hose units and 68-86% for dual-hose units, this calculator shows the estimated ASHRAE-label range you should expect on a unit that actually delivers your recommended real (SACC) capacity β€” a published estimate range, not a precise per-model conversion, since DOE does not publish one fixed ratio. Always check the specific model's EnergyGuide/DOE label for its actual SACC rating.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValue
Unit typeWindow / Through-the-Wall
Room area250 sq ft
Ceiling height8 ft
Sun exposureAverage / Typical
Kitchen / occupantsYes / 2

Step-by-Step Calculation

StepCalculationResult
Base capacity (250 sq ft)Energy Star chart lookup6,000 BTU/hr
Sun adjustment (Average / Typical)6,000 Γ— 0%+0 BTU/hr
Kitchen adjustment+4,000 flat+4,000 BTU/hr
Occupancy adjustment0 extra Γ— 600+0 BTU/hr
Adjusted BTUSum of the above10,000 BTU/hr
Recommended nominal sizeRound up to next chart size10,000 BTU/hr

Therefore, this 250 sq ft room needs a 10,000 BTU/hr window / through-the-wall air conditioner.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

Cooking appliances (range, oven, and often a refrigerator's condenser) generate sustained heat that a floor-area-only calculation doesn't capture. Energy Star's flat +4,000 BTU adjustment accounts for this.
Generally no β€” the adjustment is meant for a room with active cooking appliances like a range or oven generating real heat during use, not just a small refrigerator's minor, mostly-insulated heat output.