Pea Gravel Calculator

Estimate pea gravel for a bed, path, patio or other measured area. See cubic yards, tons and whole bags without hiding density or order allowance.

Quick estimate

Estimate pea gravel by area and depth

Enter the space and target depth. The calculator returns bulk volume, weight, whole bags and delivery loads.

1. Measure the project

2. Enter installed depth

Enter the project-required finished depth. No hidden depth recommendation is applied.

3. Choose the material basis

Results update automatically as inputs change.

Material estimate

Pea gravel to order
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View key breakdown

Detailed results and planning tools

View conversions, report and comparisons

Volume and weight conversions

Conversions use one consistent internal SI quantity and the bulk density shown in the calculator.

QuantityValue

Calculation report

Includes formulas, entered assumptions, limitations and identified sources.

Enter valid inputs to create a report.

Compare scenarios

Keep up to three alternatives while comparing dimensions, density, allowance or supplier pricing.

Quick answer#

Pea gravel is purchased in bulk or bags, so a useful estimate needs to show both volume and mass. This tool also reports whole bags using the package weight you enter.

The live result shows both volume and mass because suppliers may quote either. Every density preset is editable; it is not a promise that locally supplied material has that unit weight.

Formula and calculation method#

Bag count is based on mass, not an assumed bag coverage. Enter the actual package weight. For an irregular bed, measure total area separately and choose Known area.

The shared calculation path is:

  1. Determine measured volume in cubic metres internally.
  2. Calculate base mass as volume × bulk density.
  3. Calculate order quantity as base quantity × (1 + order allowance ÷ 100).
  4. Divide order mass by entered bag or load capacity and round up to whole units.
  5. Apply optional pricing only from the price, fixed delivery cost and tax entered by the user.

One cubic yard is exactly 27 cubic feet. One US short ton is exactly 2,000 pounds. Metric mode reports cubic metres and metric tonnes.

Worked example#

A 20 ft × 4 ft path at 2 in deep has about 0.494 yd³ of geometric volume. At 100 lb/ft³, it weighs about 0.667 short tons. With a 5% allowance, the order estimate is about 0.519 yd³ or 0.7 short tons.

The example is reproducible in the calculator, but a purchase decision should use measurements and density for the actual project and product.

Choosing a density#

Bulk density is mass per occupied bulk volume, including the spaces between particles. It is not the same as the solid-rock particle density. Moisture, gradation, particle shape, source and test procedure can all affect it.

The planning presets are intentionally editable sensitivity values. Prefer, in order:

  1. A density or tons-per-yard figure for the exact supplier product.
  2. Project test or specification data representing the required material condition.
  3. An explicitly labelled planning value that is later replaced before ordering.

ASTM C29/C29M describes a standardized method for determining aggregate bulk density (unit weight) and voids. The calculator does not claim that its editable presets are laboratory results under that standard.

Order allowance, bags and loads#

The order allowance is shown separately and applied once. Do not use it to duplicate waste, settlement or compaction already built into a supplier recommendation or project quantity.

Bag and load counts use the capacities entered and round upward. They are planning divisions only. Confirm package weight, supplier minimums, legal payload, axle limits, access and split-delivery requirements independently.

Assumptions and limitations#

This is not a drainage, accessibility, landscape-fabric or edge-restraint design. It cannot predict settlement, migration or local availability, and it does not choose a safe installed depth for a particular use.

Cost is optional and uses only the entered rate per short ton or metric tonne, fixed delivery cost and tax. Currency selection changes the label but does not perform exchange-rate conversion. Results are estimates, not bids, engineering designs, specifications or guarantees of availability.

Sources and methodology#

Sources identify the measurement and density methodology. They do not certify a specific material preset, local product or project design.

Frequently asked questions

How much pea gravel do I need?Measure the footprint, multiply by the desired installed depth and convert that volume to the supplier unit. Weight requires an entered bulk density. The calculator then applies the explicit order allowance and reports yards, tons, bags and loads.
How many bags of pea gravel do I need?The calculator divides order mass by the bag weight entered and rounds up. Check the package label because nominal bag weights and available sizes differ, and bags may be sold by volume in some markets.
What depth should I use for pea gravel?Depth depends on the application, containment, substrate, accessibility and project design. Enter the depth required by the project rather than relying on a hidden universal recommendation.
Why can the calculated tonnage change when density changes?Tonnage is calculated from volume multiplied by bulk density. Gradation, moisture, source, particle shape and how the material is measured can change bulk density, so an editable supplier or tested value is more defensible than one universal conversion.
What does the order allowance include?It is one explicit percentage applied to the calculated volume and mass. It may help cover measurement uncertainty, settlement, handling loss or project-specific extra material, but it is not an automatic compaction specification and should not duplicate an allowance already included elsewhere.
Is the result a supplier quote or final construction quantity?No. It is a planning estimate based on the dimensions, density, allowance and prices entered. Confirm product, density, compaction requirements, available load sizes and order rounding with the project specification and supplier.