When This Decision Arises
Most slab repair happens at the perimeter, where the grade beam is reachable from outside. This decision only comes up when work is needed beneath the interior of the slab: an interior load line requiring pier support, or a plumbing repair under the middle of the house.
At that point there are two ways to get there. Down from inside, or in from outside. Our slab foundation repair page covers where interior work fits into a project scope.
Interior Access
The floor covering is removed in the work area, the slab is cut and broken out, and the work is carried out from inside the house. Once complete, the slab section is repoured and the floor covering replaced.
What it involves practically:
- Flooring removal in the work area, and often a margin around it.
- Furniture relocated out of the affected rooms.
- Concrete cutting and breaking, which is loud and produces dust despite containment measures.
- An open floor for the duration of the work.
- Spoil carried out through the house.
- Slab repour, cure time, and flooring replacement.
Where it suits: work in a garage, utility area, or room with a flooring finish you were replacing anyway. Also where the required work area sits deep enough into the plan that tunnelling to it would be a substantial excavation.
Under-Slab Tunneling
A tunnel is excavated from outside the perimeter, running beneath the slab to the work location. Crews work within the tunnel, and on completion it is backfilled and compacted.
What it involves practically:
- A significant excavation outside, with an entry pit at the perimeter.
- Substantial spoil during the project.
- Shoring within the tunnel for safe working.
- Landscaping disturbance along the tunnel route and at the entry.
- Backfill and compaction on completion, which matters because a poorly compacted tunnel becomes a void.
- No interior disruption at all.
Where it suits: homes with tile, hardwood, or specialist flooring; work locations reachable within a reasonable tunnel length; households that cannot easily vacate a room.
Side by Side
| Factor | Interior access | Under-slab tunneling |
|---|---|---|
| Interior flooring | Removed and replaced | Untouched |
| Furniture | Relocated from work area | Unaffected |
| Noise and dust inside | Significant | Minimal |
| Landscaping outside | Largely unaffected | Excavation along the route |
| Excavation volume | Low | High |
| Typical duration | Shorter | Longer |
| Typical cost | Lower on the work itself | Higher on excavation |
| Total cost including finishes | Add flooring replacement | Add landscaping restoration |
| Household disruption | High | Low |
| Backfill quality importance | Slab repour matters | Tunnel compaction matters |
Notice the cost rows. Interior access is often cheaper on the structural work and then loses that advantage once flooring replacement is included. Tunnelling is more expensive on excavation and then recovers some of it by leaving the interior untouched. The comparison is only meaningful when both are priced complete.
Ask for both quoted where both are viable
If a proposal names one method without mentioning the other, ask whether the alternative was considered and why it was ruled out. On many projects both are technically feasible and the decision is genuinely yours to make once you can see the full cost of each.
What Actually Drives the Decision
Flooring value. The single biggest factor for most households. Replacing carpet in a bedroom is not comparable to cutting through a continuous tile floor that runs through the whole living area and cannot be matched.
Work location. A location near the perimeter is a short tunnel. A location in the centre of a large plan is a long one, and tunnel length drives tunnelling cost directly.
Soil conditions. Tunnelling through stable clay is different from tunnelling through loose fill or hitting rock. Site conditions affect feasibility and cost.
Utilities. What runs beneath the slab along the proposed tunnel route.
Household circumstances. Whether a room can realistically be out of use, whether there are young children or pets, whether anyone works from home.
Scope of the work. A single pier location may not justify a tunnel. Extensive plumbing replacement under a large area often does.
Backfill and Compaction
One point specific to tunnelling and worth understanding: the tunnel has to be properly backfilled and compacted on completion.
An inadequately compacted tunnel leaves a void or a zone of loose material beneath the slab, which is precisely the condition the repair was meant to address. Ask what the backfill and compaction method is and whether it is stated in the scope. It is not an incidental detail.
Where This Overlaps With Plumbing
Many under-slab access decisions arise from plumbing rather than structural work. Where a hydrostatic plumbing test has identified a break beneath the slab, the same two access options apply, and the decision is made on the same criteria.
Where both plumbing repair and pier work are needed in the same area, sequencing them together through a single access route is worth discussing. Opening the same ground twice serves nobody.