TryBuildCalc

12x12 Patio Paver Calculator (144 sq ft Patio)

Size a 12x12 ft patio instantly.

Inputs

Installation Method

Sand-Set builds up a base course, bedding sand, pavers/flagstone, and swept joint sand — held at the edges by a separate edge restraint.

Surface Material

Aggregate Base

ℹ️ICPI/CMHA cite 4 in as the minimum pedestrian patio base over well-drained soil. Step up to 6 in for clay-rich/poor-draining soil or a frost-prone climate.

Bedding Sand

ℹ️1 in is the standard bedding thickness — deeper loose sand can shift and settle unevenly.

ℹ️Bulk delivery is standard; bagged is only practical for a small patio.

Pavers

ℹ️Pedestrian-only thicknesses — no 80mm vehicular-rated tier, since a patio never carries vehicle loads.

ℹ️Running bond has the lowest cutting waste and works with any paver shape; herringbone and basket weave are designed for roughly 2:1 rectangular pavers.

Joint Fill

ℹ️Joint depth is set to your surface material's own thickness.

Geotextile Fabric & Edge Restraint

Include Geotextile Fabric?

Standard practice between subgrade and base — prevents soil migration into the base.

Include Edge Restraint in Estimate?

Edge restraint is required for an interlocking sand-set system to perform correctly — pick "No" only if a suitable restraint already exists or will be quoted separately.

Cost

Enable Cost Estimation?

Pavers Needed

681

4 x 8 in (Standard Brick), Running Bond (Stretcher) — lowest waste

Aggregate Base Needed

3.443 tons

4" deep

Patio Area

144

sq ft (13.38 m²) — 12 x 12 ft

Installation Method: Sand-Set (Flexible / Interlocking)Surface: Concrete Pavers

Aggregate Base

Quarry Process (QP) — US driveway base, 4" deep

Installed volume: 1.778 cu yd

Order volume (incl. 15% compaction + 8% waste): 2.208 cu yd

Weight: 3.443 tons

Bedding Sand

Concrete Sand (ASTM C33) — recommended for bedding, 1" deep

Order volume (incl. 10% waste): 0.489 cu yd

Weight: 0.742 tons

Pavers

4 x 8 in (Standard Brick)

Order area (incl. 5% waste): 151.2 sq ft

Pavers: 681

Joint Fill

Polymeric/joint sand, 0.125" wide

Volume (incl. 12% waste): 1.49 cu ft

Bags needed: 3 (~50 lb each)

Geotextile Fabric

Area (+10% overlap): 158.4 sq ft

Rolls needed (12.5 x 360 ft each): 1

Edge Restraint

Steel / Aluminum Edge Restraint — holds curves well, longest-lasting

Length needed: 48 linear ft

Approximate results for planning only. Verify with a professional.

Patio Layout (Top-Down View)12 ft x 12 ftPattern: Running Bond (Stretcher)Layer Cross-SectionSubgrade (compacted soil)Aggregate Base (4 in)Bedding Sand (1 in)Pavers (2.4 in)12 x 12 ft patio — Sand-Set, Concrete PaversSand-Set: edge restraint (not shown) runs the full perimeter

Diagram simplified for clarity (not to scale) — layer band heights reflect relative thickness, not exact scale.

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Patio/Paver Materials Calculator.

A popular mid-size patio footprint

12 x 12 ft (144 sq ft) is a popular mid-size patio footprint — comfortably fitting a full outdoor dining set or a larger lounge arrangement, while still being a manageable single-weekend DIY project for many installers.

Edit the inputs above to adjust the size, installation method, or surface material — every material quantity recalculates instantly from your actual dimensions.

Patio/Paver Materials Calculator Formula: How Is It Determined?

Your patio area, installation method, and surface material combine into a full material takeoff, with a different formula path for each branch of the sand-set/mortar-set x pavers/flagstone matrix.

Step 1 — Patio Area

Area = Length x Width

Entered directly as a single rectangle.

Step 2a — Sand-Set: Base Course

Base Volume = Area x Base Depth

Order Volume = Base Volume x (1 + 15% compaction) x (1 + 8% waste)

Base depth is a pedestrian-only figure (4-6 in) per ICPI/CMHA patio guidance — materially shallower than a driveway's vehicular-load base.

Step 2b — Mortar-Set: Concrete Slab

Slab Volume = Area x Slab Thickness (skipped entirely if mortaring onto an EXISTING slab)

Order Volume = Slab Volume x (1 + 5% waste)

A new slab is 4-6 in thick per CMHA mortar-set guidance; an existing, sound concrete patio can be used directly with no new slab material.

Step 3 — Bedding Course or Mortar Setting Bed

Sand-Set: Bedding Volume = Area x Bedding Depth x (1 + 10% waste)

Mortar-Set: Mortar Bed Volume = Area x Mortar Bed Depth x (1 + 10% waste), then Bags = Order Volume / Bag Yield

Bedding sand/stone dust is installed loose (no compaction allowance); a mortar bed is troweled to a nominal thickness and bagged in whole units.

Step 4a — Concrete Pavers

Order Area = Area x (1 + Layout Pattern Waste %)

Paver Count = Order Area / Paver Unit Area

Layout pattern waste ranges 5-13% depending on cut geometry — the same formula this site's Paver Driveway Calculator uses, since the underlying cutting-waste geometry doesn't change for pedestrian loads.

Step 4b — Natural Flagstone

Order Area = Area x (1 + 10% cutting/breakage waste)

Tons = Order Area x Thickness x Stone Density / 2000

Flagstone is quantified by WEIGHT, not a fabricated per-unit count — coverage-per-ton is derived directly from the stone's own density and thickness.

Step 5 — Joint Fill

Rectangular units: Volume per sq ft = 144 x (1/W + 1/L) x Joint Width x Joint Depth

Flagstone: Volume = Area x Joint Area Fraction x Joint Depth

Concrete pavers use exact rectangular joint geometry; flagstone's irregular joints are approximated as a fraction of surface area that scales with joint width (a standard simplification for irregular-stone jointing takeoffs).

Step 6 — Cost

Line Cost = Order Quantity (bags/tons/sheets/bars/sq ft, as actually purchased) x Unit Price

Total = Sum of every line item relevant to your selected installation method

Every cost line is priced off the actual PURCHASED unit — never the bare theoretical volume — and only line items relevant to your selected Sand-Set/Mortar-Set branch are included in the total.

Worked Example

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

Input Values Used

InputValue
Patio Size12 x 12 ft (144 sq ft)
Installation MethodSand-Set
Surface Material4 x 8 in (Standard Brick), Running Bond (Stretcher) — lowest waste

Step 2a — Base Course

CalculationResult
144 sq ft x 4/12 ft, +15% compaction +8% waste2.208 cu yd (3.443 tons)

Step 3 — Bedding Sand

CalculationResult
144 sq ft x 1/12 ft, +10% waste0.489 cu yd

Step 4a — Pavers

CalculationResult
151.2 sq ft / 0.2222 sq ft per paver681 pavers

Step 5 — Joint Fill

CalculationResult
1.33 cu ft, +12% waste1.49 cu ft (3 bags)

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

Therefore, a 144 sq ft (12 x 12 ft) Sand-Set patio using 681 4 x 8 in (Standard Brick) pavers needs 2.208 cu yd of base and 0.489 cu yd of bedding, plus 3 bags of joint fill.

FAQ

It depends on your chosen paver size and layout pattern — for example, a 4 x 8 in paver in a Running Bond pattern (5% waste) needs 681 pavers for a 144 sq ft patio (144 sq ft x 1.05 waste, divided by each paver's 32 sq in / 144 footprint). Change the paver size or pattern above to see the exact count for your own choices.
Yes — this calculator's reinforcement math (wire mesh sheets or a rebar grid) works correctly at this size, and a 12 ft run stays within a single 20 ft rebar stock length in both directions, so no lap splicing is triggered at this size.