TryBuildCalc

Nursery Pot Soil Volume Calculator (Trade Container Classes, #SP4 to #25)

Find the soil volume of a nursery pot by its trade class number.

Inputs

Containers

Measurement Unit

Applies to every container dimension and to the headspace — switching converts the figures already entered rather than reinterpreting them. Always measure the inside of a container — a thick-walled pot or planter can lose an inch or more of width to its own walls.

Container List

Add a row per size or shape — pots, window boxes and baskets can all go in one job.

Container 1

Uses the published ANSI Z60.2-2025 container class volume rather than dimensions. Pick this when you know the pot's trade number but have not measured it.

ANSI Z60.2-2025 allows a #3 anywhere from 628 to 742 cu in (a true 3-gallon pot would be 693 cu in). This row is using 685 cu in 10.2 dry qt. The narrowest class range in the table — a #3 is the most predictable of the common sizes.

Fill Level

Fill Method

The simpler option, and the only one available for a container entered by class number rather than by dimensions.

%

ℹ️The share of each container's volume that becomes mix. Around 85-95% is usual — 100% means filled dead level with the rim, which washes out on the first watering.

%

ℹ️Extra mix to cover settling after the first watering, so you are not left topping up from an empty bag. Around 10% is a reasonable allowance; enter 0 to order the bare calculated volume.

Bags & Cost Estimation

ℹ️US bags are labelled in DRY quarts (25.7 to a cubic foot, not the 29.9 a liquid-quart conversion would give); UK, EU and Australian bags are labelled in litres. Both are listed here, so pick whichever matches the bag in front of you.

Enable Cost Estimation?

Potting Mix Needed

9.81 cu ft

252.3 dry qt / 277.8 L / 0.278

Bags to Buy

5

2 cu ft (≈56.6 L / 51.4 dry qt)

25 × Nursery container by class (#1, #5, #15 ...)

Filled to 90% of each container's volume.

ContainerQtyHolds (full)Mix eachMix total
Container 1 #3 ("3 gallon")2510.2 dry qt (11.2 L)9.2 dry qt (90% full)8.92 cu ft (229.4 dry qt)
Total (before settling)25254.8 dry qt8.92 cu ft

Volume

Total container volume (brim-full): 9.91 cu ft (254.8 dry qt / 280.6 L)

Mix volume at your fill level: 8.92 cu ft (229.4 dry qt / 252.6 L)

Order volume (+10% settling): 9.81 cu ft (252.3 dry qt / 277.8 L)

Dry quarts, not liquid quarts

US potting mix bags are labelled in dry quarts — 25.7 to a cubic foot. Your 9.81 cu ft is 252.3 dry qt. A calculator that converted with liquid quarts would tell you 293.6 qt — about 16% more mix than you need.

A nursery container class is a permitted volume RANGE, not one fixed size — ANSI Z60.2-2025 lets a #5, for example, hold anywhere from 785 to 1,242 cu in. Measuring the pot you actually have is always more accurate than its trade number.

Container Fill Diagram

Nursery container by class (#1, #5, #15 ...)not to scaledepth n/aheadspace90% full9.2 dry qtper container#3 ("3 gallon")5 × 2 cu ft bagsfor 25 containers — last bag about 91% used

Diagram simplified for clarity — a container entered by class number has a published volume but no published dimensions, so a generic pot shape stands in and only the fill share is to scale.

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Potting Soil & Container Volume Calculator.

A container class is a volume RANGE, not a gallon figure

The American Standard for Nursery Stock (ANSI Z60.2-2025) defines each trade container class as a permitted range of volumes in cubic inches, and states that containers marketed with a "trade" or "#" designation must fall within those ranges. A #1 may hold anywhere from 152 to 251 cubic inches — roughly 2.3 to 3.7 dry quarts, not four. A #5 spans 785 to 1,242 cubic inches, a 58% spread. The standard is explicit that a class is not limited to a single volume, and that specifying stock by "quarts" or "gallons" alone is not in accordance with it.

That means there is no single correct figure for a class, which is why this calculator asks you to choose the class minimum, midpoint or maximum rather than quietly inventing one. Use the minimum when ordering mix for pots you have not seen, the midpoint for a balanced estimate, and the maximum for a worst case. Because a class is a published volume with no published dimensions, a headspace in inches cannot be applied to it, so these rows use the percentage fill level instead.

Potting Soil Formula & Method

Every figure is computed in cubic inches and converted only for display. Cubic inches is the natural working unit here because it is the unit the nursery container standard publishes its class volumes in, and because it converts cleanly to both dry quarts and litres.

Step 1 — Container volume, by shape

Round, straight-sided (cylinder):

V = pi x D² x h / 4

 

Round, tapered (cone frustum):

V = (pi x h / 12) x (D² + D x d + d²)

 

Rectangular, straight-sided (box):

V = L x W x h

 

Rectangular, tapered (prismatoid):

V = (h / 6) x [L x W + (L + l) x (W + w) + l x w]

 

Bowl / rounded basket (spherical cap):

V = (pi x h / 6) x (3 x (D/2)² + h²)

 

D, L, W = inside dimensions at the RIM

d, l, w = inside dimensions at the BASE

h = inside depth

All five are exact formulas for their solid, not approximations. The frustum reduces to the cylinder when there is no taper, and the prismatoid reduces to the box — so entering equal rim and base dimensions gives the straight-sided answer, as it should. The prismatoid form is used rather than a pyramid frustum because a planter can taper by different amounts along its length and its width, and the prismatoid rule is exact for that case too.

Step 2 — Volume of mix at the fill line

Headspace method:

filled depth h_f = h - headspace

width at fill line = base + (rim - base) x (h_f / h)

V_mix = the SAME shape formula, recomputed with

h_f and the fill-line width

 

Percentage method:

V_mix = V_container x fill% / 100

(the fill DEPTH is then solved back from V_mix)

This is the step most calculators skip. Scaling the brim-full volume by the depth ratio would treat the empty slice as if it were an average slice, but on a container that is wider at the rim the empty slice is the widest one. For a 12 in rim, 9 in base, 10.5 in deep pot, filling to 9.5 in gives 805 cu in, not the 828 cu in a flat depth-ratio scaling suggests — a 2.9% difference on one pot, and the same 2.9% across every pot in the order. Note also that the two methods are not interchangeable: 90% of that pot's volume sits at 9.67 in of depth, not 9.45 in.

Step 3 — Whole job, plus settling

V_row = V_mix x number of containers in the row

V_total = sum of every row

V_order = V_total x (1 + settling% / 100)

The settling allowance covers the drop in level when a fresh, air-filled mix is watered in for the first time, so you are not left topping up from an empty bag. It is a practical top-up figure rather than a cited standard — 10% is a reasonable default, and 0 gives the bare calculated volume.

Step 4 — Unit conversion, in DRY quarts

1 US dry quart = 67.200625 cu in -> 25.71 per cu ft

1 US liquid quart = 57.75 cu in -> 29.92 per cu ft

1 litre = 61.024 cu in

1 cubic foot = 1,728 cu in

1 US gallon = 231 cu in

 

dry qt needed = V_order / 67.200625

Bagged potting mix, garden soil and compost sold at US retailers is labelled in US dry quarts. Using liquid quarts — the conversion a general-purpose unit converter will give you — overstates the number of labelled quarts by 16.4%. The calculator reports both figures side by side so the gap is visible rather than assumed.

Step 5 — Bags and cost

bags = ROUNDUP( V_order / bag volume ) (minimum 1)

cost = bags x price per bag

The bag count rounds up because partial bags cannot be bought, and it is always computed from the unrounded order volume — rounding the volume for display first and then dividing can silently drop a bag when the true figure sits just over a whole-bag boundary. Cost follows the whole-bag count, not the volume, because that is what you actually pay.

Containers entered by trade class

V_container = ANSI Z60.2-2025 Table 1 class volume

basis = class minimum / midpoint / maximum

 

"true to size" reference (standard §1.1.3.4):

cu in = gallons x 231

A class is a permitted range, not a size, so there is no single correct figure to use — the basis is yours to choose. Because such a row has a published volume but no published dimensions, a headspace in inches cannot be applied to it, and the percentage fill level is used for those rows instead. The calculator states this on the row and in the results rather than mixing two fill bases silently.

Worked Example

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

Input Values Used

InputValue
Container 125 x #3 ("3 gallon") (class midpoint)
Fill Level90% of each container's volume
Settling & Top-Up Allowance10%
Bag Size2 cu ft (≈56.6 L / 51.4 dry qt)

Step 1 — Container Volume, by Shape

CalculationResult
#3 ("3 gallon") class midpoint (ANSI Z60.2-2025 Table 1)685 cu in each (10.2 dry qt) — published class volume
Total brim-full volume across 25 containers17,125 cu in (9.91 cu ft)

Step 2 — Volume of Mix at the Fill Line

CalculationResult
685 cu in x 90% — a class is a volume, so no headspace can be applied616.5 cu in of mix each — 90% of the container

Step 3 — Whole Job, Plus Settling

CalculationResult
616.5 cu in x 25 containers15,412.5 cu in (8.92 cu ft)
Total mix before settling15,412.5 cu in (8.92 cu ft)
15,412.5 x (1 + 10 / 100)16,953.8 cu in to order (9.81 cu ft)

Step 4 — Unit Conversion, in DRY Quarts

CalculationResult
16,953.8 / 67.200625 cu in per dry quart252.3 dry qt — the unit US bag labels use
16,953.8 / 1,728 cu in per cubic foot, and / 61.024 per litre9.81 cu ft (277.8 L)
The same volume converted with LIQUID quarts (57.75 cu in) instead293.6 qt — about 16% more mix than the containers hold

Step 5 — Bags and Cost

CalculationResult
One 2 cu ft bag3,456 cu in (56.6 L)
ROUNDUP(16,954 / 3,456)5 bags to buy

Figures above are rounded for display; the real quantities are always calculated from full, unrounded values.

Therefore, 25 containers need 9.81 cu ft of potting mix — 252.3 dry quarts (277.8 litres) including a 10% settling allowance — which comes to 5 bags of 2 cu ft.

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

Between 628 and 742 cubic inches under ANSI Z60.2-2025 — 9.3 to 11.0 dry quarts — with a midpoint of 685 cubic inches, about 10.2 dry quarts. The #3 has the narrowest range of the common classes, so it is the most predictable: 25 of them at 90% fill come to roughly 229 dry quarts, or about 8.9 cubic feet of mix.
Because the number is a trade class, not a liquid measure. ANSI Z60.2-2025 permits a #5 to hold 785 to 1,242 cubic inches, while a true five US gallons is 1,155 cubic inches — inside the range, but only one point in it. A grower who needs a pot that genuinely matches its gallon equivalent has to specify it as "true to size", labelled with a T after the class, such as #5T.