TryBuildCalc

Compost Bin Size Calculator (By Bin Dimensions)

Size your compost bin's recipe instantly.

Inputs

Enter Pile/Bin Size

ℹ️A roughly 3 ft x 3 ft x 3 ft bin/pile (27 cu ft) is the commonly-cited minimum size for a pile to self-insulate and reach hot/thermophilic composting temperatures.

Target C:N Ratio

:1

ℹ️The commonly-recommended range for active, hot composting is roughly 25:1-30:1 (Cornell Waste Management Institute cites ~30:1 as the ideal). A lower ratio composts faster but risks losing nitrogen as ammonia odor; a higher ratio decomposes more slowly.

Brown Material (Carbon)

ℹ️Carbon-rich, dry/woody material — the ingredient that balances a nitrogen-rich green.

Cornell Waste Management Institute's own On-Farm Composting Handbook table gives dry leaves a C:N ratio averaging 54:1 (range 40-80:1, this preset uses a representative 60:1), 0.9% nitrogen (dry weight), and a loose/dry bulk density of roughly 100-300 lb per cubic yard (this preset's ~7 lb/cu ft is the midpoint). Leaf C:N varies noticeably by tree species (Cornell's own leaf-species table ranges from 15:1 for alder to 113:1 for larch) — use Custom C:N Ratio for a known single-species leaf pile.

Green Material (Nitrogen)

ℹ️Nitrogen-rich, moist material — the ingredient that balances a carbon-rich brown.

Cornell's On-Farm Composting Handbook table gives fresh grass clippings a C:N ratio averaging 17:1 (range 9-25:1), 3.4% nitrogen (dry weight), and 82% moisture — consistent with Cornell's own separate "Getting the Right Mix" chapter, which cites roughly 80% moisture for grass clippings. Loose bulk density (~300-400 lb/cu yd, this preset's ~13 lb/cu ft is the midpoint) roughly doubles if the clippings settle/compact.

Cost (Optional)

Enable Cost Estimation?

Brown Material Needed

21.94

cu ft (0.813 cu yd) — 153.6 lb (69.7 kg)

Green Material Needed

26.06

cu ft (0.965 cu yd) — 338.8 lb (153.7 kg)

Target C:N ratio 30:1 achieved (as mixed: 30:1) for a 48 cu ft (1.778 cu yd) pile

Mixture moisture (as mixed): 67.3% by weight

This blend works out to about 67% moisture by weight — above the commonly-recommended 40-60% range (Cornell: a pile should feel like a wrung-out sponge). Above roughly 60%, water crowds out the air pockets a pile needs and it becomes prone to compacting and going anaerobic (slow, smelly decomposition) — regardless of how close the C:N ratio is to the target. Mix in more dry brown material, or turn the pile more often to help it dry out.

Brown Material (Carbon)

Material: Dry Leaves

C:N ratio: 60:1

Volume: 21.94 cu ft (0.621 m³)

Weight: 153.6 lb (69.7 kg)

Green Material (Nitrogen)

Material: Grass Clippings (fresh)

C:N ratio: 17:1

Volume: 26.06 cu ft (0.738 m³)

Weight: 338.8 lb (153.7 kg)

Estimated Finished Compost Yield

Roughly 14.4-24 cu ft (0.533-0.889 cu yd) once fully broken down and settled.

A rough estimate only — composting typically reduces starting volume by roughly 50-70% as organic matter breaks down, moisture evaporates, and the pile settles, but real shrinkage varies hugely by materials, moisture, turning frequency, and climate. Do not treat this as a precise figure.

Compost Pile / Bin (Side View)48 cu ft total48 cu ft pile — 46% brown / 54% green (by volume)Target 30:1 — as mixed 30:1Brown bands = Dry Leaves / Green bands = Grass Clippings (fresh)

Diagram simplified for clarity (not to scale) — pile shown schematically, layer heights reflect the real brown:green volume split.

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Compost Calculator.

Recipe by your bin's real dimensions

Enter your compost bin's actual length, width, and height instead of estimating a total volume — this calculator multiplies them into the real total volume before computing the brown/green recipe split.

This page defaults to a 4 ft x 4 ft x 3 ft bin (48 cu ft) — well above the commonly-cited 27 cu ft (3 ft x 3 ft x 3 ft) minimum for a pile to self-insulate and reach hot composting temperatures. Edit the inputs above to match your own bin's real dimensions.

Compost Calculator Formula: How Is It Determined?

A target pile volume, a target C:N ratio, and each material's own C:N ratio/%nitrogen/bulk density/moisture combine into a real mass-weighted blend — never a rough volume-only split.

Step 1 — Pile/Bin Volume

By Total Volume: Volume = entered value

By Bin Dimensions: Volume = Length x Width x Height

Either enter the target total volume directly, or enter a rectangular bin's length, width, and height.

Step 2 — Nitrogen Mass per Unit Volume

Nitrogen per cu ft = Bulk Density x (%Nitrogen / 100) x (1 - Moisture% / 100)

%Nitrogen is measured on a DRY-WEIGHT basis, so it only applies to the material's dry portion — bulk density (the material's as-piled weight per cu ft) times (1 - moisture%) gives the dry weight per cu ft, which is then multiplied by %nitrogen to get actual nitrogen mass per cu ft. This is the building block the whole blend depends on — see the Reference Tables section below for why skipping this step (mixing by volume alone) gives a physically wrong C:N ratio.

Step 3 — Volume Split to Hit the Target Ratio

Brown Volume = Total Volume x [Green N/cu ft x (Target - Green Ratio)] / Denominator

Denominator = Brown N/cu ft x (Brown Ratio - Target) + Green N/cu ft x (Target - Green Ratio)

Green Volume = Total Volume - Brown Volume

Derived from the identity that a blend's overall C:N ratio is the NITROGEN-MASS-weighted average of each material's own ratio (R = total Carbon mass / total Nitrogen mass, and each material's own Carbon mass = Nitrogen mass x that material's own C:N ratio). This engine's formula was independently re-derived and verified against Cornell Waste Management Institute's own published worked example (a real 10 kg grass + leaves mix targeting 30:1) — see the Reference Tables section for the comparison.

Step 4 — Weight

Material Weight = Material Volume x Material Bulk Density

Each material's resulting volume converts directly to weight using its own bulk density, so you can weigh out ingredients instead of (or in addition to) measuring volume.

Step 5 — Estimated Finished Yield

Low Estimate = Total Volume x 30% (i.e. 70% shrinkage)

High Estimate = Total Volume x 50% (i.e. 50% shrinkage)

Composting typically reduces starting volume by roughly 50-70% as organic matter breaks down, moisture evaporates, and the pile settles — shown as a RANGE with an explicit caveat, since real shrinkage varies hugely by materials, moisture, turning frequency, and climate.

Worked Example

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

Input Values Used

InputValueWhy it is used
Total Volume48 cu ft (1.778 cu yd)Sets the total to split between materials
Target C:N Ratio30:1Sets the blend goal
Brown MaterialDry Leaves (60:1, 0.9%N, 7 lb/cu ft, 35% moisture)Carbon side of the blend
Green MaterialGrass Clippings (fresh) (17:1, 3.4%N, 13 lb/cu ft, 82% moisture)Nitrogen side of the blend

Step 1-3 — Volume Split

CalculationResult
Brown Volume (mass-weighted split, solved for target 30:1)21.94 cu ft
Green Volume = 48 - 21.9426.06 cu ft
As-Mixed C:N Ratio (independent check)30:1
As-Mixed Moisture (weight-weighted blend)67.3%

Step 4 — Weight

CalculationResult
Brown Weight = 21.94 cu ft x 7 lb/cu ft153.6 lb (69.7 kg)
Green Weight = 26.06 cu ft x 13 lb/cu ft338.8 lb (153.7 kg)

Step 5 — Estimated Finished Yield

CalculationResult
Low Estimate = 48 cu ft x 30%14.4 cu ft
High Estimate = 48 cu ft x 50%24 cu ft

Figures above are rounded for display; the real recipe split is always calculated from full, unrounded values, so it can occasionally look off by a hair if you redo the division yourself using the rounded figures shown.

Therefore, a 48 cu ft pile targeting 30:1 needs approximately 21.94 cu ft (153.6 lb) of Dry Leaves and 26.06 cu ft (338.8 lb) of Grass Clippings (fresh).

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

Roughly 27 cu ft (about 3 ft x 3 ft x 3 ft) is the commonly-cited minimum for a pile to be large enough to self-insulate and reach hot/thermophilic composting temperatures. A smaller bin still composts, just more slowly as a "cold pile."
Not necessarily beyond a certain point — a pile that's too large can be hard to turn and aerate fully, which can lead to anaerobic (oxygen-starved) pockets. Many home composting systems use multiple smaller bins (e.g. 3-4 ft cubed each) rather than one very large pile.