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Retaining Wall Calculator

Enter your wall length and height and pick your block size, and this retaining wall calculator gives the blocks per course, the number of courses, the total blocks to buy, the cap blocks and the compacted sub-base gravel for the levelling pad. Works in metres or feet.

Retaining Wall

01. Wall sections

Total wall run: 6.00 m

02. Block & base

Base pad runs about 150 mm (6 in) wider than the block; the backfill is the free-draining gravel zone behind the wall.

Blocks to order
126wall blocks

Cap blocks

21

Courses high

6

Base gravel

0.31 m³

Gravel to order (two different materials)

  • Base pad (compacted base)0.31 m³
  • Drainage backfill (clean stone)1.62 m³

Under ~4 ft (1.2 m), no geogrid is usually needed - bury the bottom course and build on a compacted leveling pad. Check your local code before you start.

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Guide & worked example

How this calculator works

A segmental retaining wall is dry-stacked, not mortared, so it is counted by the course rather than by area. Each course is a row of whole blocks spanning the wall length, and the wall is as many courses high as the block height divides into the wall height:

blocks per course = ceil( wall length ÷ block width )
courses           = round( wall height ÷ block height )
wall blocks       = ceil( blocks/course × courses × wastage )
cap blocks        = ceil( wall length ÷ cap width × wastage )
base gravel       = wall length × (block depth + 150 mm) × pad depth
backfill gravel   = wall length × wall height × backfill zone
curved length     = π × diameter × arc ÷ 360   (developed run of a curve)

Building an L-shape, a stepped wall, a radiused bed or a tree ring? Add a section for each run - set it to Straight, Curved (diameter + arc) or Round (a full circle) - and the block counts pool into one order. The calculator sizes two lots of gravel: the compacted leveling pad the wall sits on, in a trench a little wider than the block, and the free-draining backfill zone behind the blocks that carries water down to the drain pipe - order them as two different materials. All math runs in exact metric internally, so switching between feet and metres never changes the answer.

How many retaining wall blocks do I need?

The quick answer is blocks per course × number of courses, plus a cap row and a little waste. You do not need the wall area or a “blocks per square foot” figure - the block face width sets how many fit in a course, and the block height sets how many courses tall the wall is. Enter your wall length, your wall height and the block size above and the calculator returns the blocks per course, the courses, the total blocks to buy, the caps and the base gravel in one go - in square feet or metres, for a concrete, cinder, SRW or system block.

Worked example

This example follows the unit system you pick in the calculator above.

A 6 m long, 0.9 m high wall in 300 × 150 mm blocks (200 mm deep), with a 300 mm cap, on a 150 mm gravel pad and a 300 mm backfill zone, 5% wastage:

  1. Blocks per course: 6 ÷ 0.3 = 20 (round any part block up).
  2. Courses: 0.9 ÷ 0.15 = 6 courses high.
  3. Wall blocks: 20 × 6 = 120, × 1.05 = 126 blocks.
  4. Cap blocks: 6 ÷ 0.3 = 20, × 1.05 = 21 caps.
  5. Base pad: 6 × (0.20 + 0.15) × 0.15 = 0.32 m³.
  6. Drainage backfill: 6 × 0.9 × 0.30 = 1.62 m³ of clean stone.
  7. At 0.9 m the wall is under 1.2 m, so no geogrid is usually needed.

Block and base reference

Common segmental block sizes and how many fit in one course - multiply by the number of courses for the wall total:

BlockFace (W × H)DepthBlocks per m of courseBlocks per ft of course
Garden wall block300 × 150 mm (12 × 6 in)200 mm (8 in)3.31.0
Standard SRW400 × 150 mm (16 × 6 in)300 mm (12 in)2.50.75
Large SRW450 × 200 mm (18 × 8 in)300 mm (12 in)2.20.67
Leveling pad100-150 mm (4-6 in) deepblock depth + ~150 mm wide--

So a 20 ft wall, 6 courses high, in 12 in blocks is 20 × 6 = 120 blocks before waste - the calculator does the rounding and adds the caps and base gravel.

Tips for ordering and building

  • Bury the bottom course: dig down so the first course sits below finished grade (about one-tenth of the wall height), on top of the compacted gravel pad, for a wall that will not kick out at the base.
  • Step the pad on a slope rather than tilting it, so every course stays level and the wall does not lean.
  • Build in a slight backward batter (lean into the bank) - most block systems set the batter automatically with a lip or pin.
  • Backfill behind the blocks with free-draining gravel and run a perforated drain pipe to daylight, so water pressure never builds up behind the wall.
  • For a wall over about 1 to 1.2 m (3 to 4 ft), or any wall holding back a driveway or slope, get an engineered design with geogrid - the calculator sizes the facing blocks and base, not the reinforcement.

Permits and standards where you are

In the United Kingdom, this is a retaining wall, usually built from interlocking gravity blocks rather than the US "SRW" system. As permitted development a wall can be up to 1 m high next to a highway and up to 2 m elsewhere before you need planning permission; a structural retaining wall also falls under the Building Regulations, and work within 3.7 m of a public highway needs Highways Act approval.

For the recognised design method and the approval rules that apply to your wall, see the UK Planning Portal guidance on garden walls (with earth-retaining design to BS EN 1997, Eurocode 7). A tall or surcharged wall is an engineered structure - the calculator sizes the blocks and base, not the geogrid reinforcement, which depends on the soil you are holding back.

Retaining wall guides

Go deeper on any part of the job:

Frequently asked questions

01

How many retaining wall blocks do I need?

Work out one course first - the wall length divided by the block face width, rounded up to whole blocks - then multiply by the number of courses, which is the wall height divided by the block height. A 6 m long, 0.9 m high wall in 300 × 150 mm blocks is 20 blocks per course × 6 courses = 120 blocks, plus a cap row and a waste allowance. Enter your wall and block sizes above for the exact count.

02

How many courses high will my wall be?

Divide the wall height by the height of one block and round to the nearest whole course, because you build to a course line and cannot lay a part course. A 0.9 m wall in 150 mm blocks is 6 courses; a 1.2 m wall in 200 mm blocks is also 6 courses. Remember the bottom course is usually buried, so the finished wall above ground is a little lower than the full stack.

03

Does this work for concrete or cinder block retaining walls?

Yes. The same block, course and base maths applies to any dry-stacked unit - concrete retaining wall block, besser/cinder block, split-face SRW block, or a system block like Allan Block, Versa-Lok, Keystone, Adbri or Firth. Pick a preset or type your block size in, and the calculator counts the blocks, caps and base gravel. It works just as well with blocks from any builders' merchant or landscape yard - the size is what matters, not the brand.

04

Can I use it for a timber or sleeper retaining wall?

You can. Enter the timber or sleeper size as the block - for a 200 × 100 mm sleeper that is a 100 mm face height and your chosen length, with as many courses as the wall is high. The block count then becomes the number of timbers or sleepers per course times the courses. Timber walls do not take cap blocks, so ignore the cap line, and remember they are usually held with deadmen and spikes rather than stacked dry.

05

How do I calculate a circular or curved retaining wall?

Set the wall section to Curved (enter the diameter and the arc angle) or Round for a full circle, and the calculator works out the developed length - π × diameter × arc ÷ 360 - then counts the blocks, caps and base by course as normal, with a diagram of the curve. Curve-rated retaining blocks are tapered to fit a radius; standard straight blocks leave wedge gaps on a tight curve, so bump the waste. For a mortared round fire pit lined with fire brick, the [brick & block calculator](/brick-calculator/) has a matching round mode.

06

How tall can a retaining wall be before I need an engineer?

It depends where you are, but as a rough guide many places draw the line around 1 to 1.2 m (3 to 4 ft) of exposed height - above that you usually need a building permit and a wall designed by an engineer, with geogrid reinforcement built into the soil behind the blocks. A wall holding back a driveway, pool or slope (a surcharge) can need engineering at any height. The calculator flags when your wall is over the usual threshold.

07

How much does a retaining wall cost?

Build the material list first - blocks, caps, base gravel, drainage backfill and adhesive from this calculator - price each line locally, then add labour, which is often half or more of an installed wall price. A taller wall costs much more per metre because it needs an engineered design and geogrid. See the cost guide below for the full breakdown rather than a single per-metre rate.

08

Should I order extra blocks for waste?

Allow about 5% for a straight wall with few cuts, and 10% where there are curves, corners and steps that need blocks cut to fit. Split-face and tumbled blocks also vary in colour between batches, so order a little long and keep some spares. The calculator adds your chosen waste allowance to the wall and cap counts before rounding up.

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