The Eight-Step No-Demolition Detection Sequence
Below is the field procedure our McCordsville technicians follow in order. Each step has a pass condition that moves us to the next stage and a fail condition that branches to additional testing.
Step 1: Visual and Historical Intake (10 to 15 minutes)
- Document visible staining, paint blistering, and baseboard cupping with photos.
- Confirm fixture age, last plumbing work, and water bill changes over the past 90 days.
- Note any pressure complaints, hot water cycling, or hammering sounds.
- Mark suspect wall sections with painter's tape at 12-inch intervals.
- Ask the homeowner about recent weather events, seasonal humidity swings, and any HVAC service performed in the prior 60 days.
- Photograph the electrical panel and main shutoff location for the file, since access routes affect later steps.
Step 2: Surface Moisture Mapping
- Run a pinless capacitance meter (Tramex MEP or equivalent) across all taped sections.
- Record readings on a 0 to 100 relative scale. Dry baseline for painted drywall sits between 5 and 17.
- Flag any zone reading 25 or above as elevated.
- Flag any zone reading 40 or above as saturated and prioritize for thermal scan.
- Cross reference readings against substrate type. Plaster over lath, painted MDF trim, and tile backer each shift the baseline by 3 to 8 points.
- Re sweep flagged zones after 30 minutes to confirm whether readings hold steady, climb, or fade.
Step 3: Pin-Probe Verification
- At each elevated zone, drive insulated pins to 5/16 inch depth.
- Confirm wood framing moisture content. Dry studs read 7 to 12 percent. Wet framing reads 18 percent and above.
- If pin readings disagree with pinless by more than 15 points, suspect a surface condensation issue rather than a pressurized leak.
- Probe both the top and bottom of the suspect bay. A wet bottom plate with a dry top plate points to a drain or fixture supply at floor level.
For background on the equipment we lean on at this stage, see our notes on moisture mapping with thermal imaging.
Step 4: Thermal Imaging Sweep
- Use a 320x240 resolution or higher thermal camera (FLIR E6 Pro minimum).
- Set delta-T threshold at 3 degrees Fahrenheit between suspect and reference areas.
- Scan with hot water running for 90 seconds, then off for 90 seconds.
- A hot line signature confirms a hot supply leak. A cold persistent shadow suggests cold supply or drain seepage.
- Photograph each thermal capture with a visible light overlay for the file.
- Repeat the sweep with the HVAC system cycled off for 5 minutes to eliminate duct induced thermal artifacts that mimic leak patterns.
- Verify ambient room temperature sits between 65 and 78 degrees Fahrenheit. Outside this band, delta-T contrast drops and false negatives rise.
Step 5: System Pressure Isolation Test
- Shut the main supply and read the pressure gauge at the hose bib. Typical McCordsville static pressure runs 55 to 75 PSI.
- Close the gauge valve and watch for a drop. A loss of 5 PSI in 15 minutes indicates a pressurized supply leak.
- If pressure holds, isolate the water heater and retest to separate hot from cold side losses.
- If pressure still holds, the leak is likely drain, vent, or appliance related rather than continuous supply.
- Log barometric pressure and ambient temperature during the test. A 10 degree swing can mask a slow leak by expanding or contracting the trapped column.
Step 6: Acoustic Correlation
- Deploy ground microphones or a wall contact acoustic probe rated for 200 to 2500 Hz.
- Pressurize the suspect line to 60 PSI if not already.
- Walk the wall in 6-inch increments. Leak signatures peak between 400 and 1200 Hz for copper and 200 and 600 Hz for PEX.
- Mark the loudest point. Confirm by triangulating from two adjacent listening positions.
- Silence HVAC, refrigerators, and any recirculating pumps during the sweep. Background noise above 45 dB will mask pinhole signatures.
Acoustic work is also how we narrow down concrete encased lines, a topic covered in our guide to slab leak detection under the foundation.
Step 7: Borescope Confirmation
- Drill a 5/16 inch inspection port at the acoustic peak, angled into the stud bay.
- Insert an articulating borescope with 720p resolution and a 6mm head.
- Document the leak source: pinhole, fitting, slip joint, or stress fracture.
- If no visible water appears, rotate the camera 360 degrees and inspect adjacent bays.
- Capture still frames at three angles and record a 30 second video pass for the claim file.
Step 8: Containment and Drying Plan
- If active, shut the relevant supply branch and note the time.
- Calculate affected square footage and cubic footage of wall cavity.
- Stage LGR dehumidifiers sized for the load (one 130 pint unit per 1500 cubic feet of wet space).
- Set air movers at 15 to 20 degree angles to wall openings, one per 12 to 16 linear feet.
- Target equilibrium moisture content of 12 percent or lower in framing before close up.
Decision Branches You Should Understand
- If Step 5 confirms pressure loss but Steps 4 and 6 cannot localize, the leak is likely in a slab or behind tile. Plan for a plumber led access strategy.
- If thermal shows a wet pattern but pressure holds, suspect a drain line. Schedule a fill and observe test at the nearest fixture.
- If moisture readings are elevated but no leak signature appears, recheck HVAC condensate and exterior envelope before opening the wall. Our overview of signs of hidden water damage and early detection covers the common false positives.
- If acoustic data points to one bay but thermal points to another, trust the borescope. Sound travels through framing and can mislead by 12 to 18 inches.
Response Window and Scheduling Notes
- For active leaks reported by McCordsville homeowners, McCordsville Water Restoration dispatches a detection crew within 2 hours in most cases.
- For stable, non active suspected leaks, scheduling typically falls within 24 to 48 hours.
- Equipment loadout is confirmed before dispatch so a single visit covers all eight steps when conditions allow.
Documentation Deliverables
- Annotated floor plan with all moisture readings.
- Thermal image set, before and after running water.
- Pressure log with timestamps.
- Borescope video file of confirmed source.
- Drying plan with equipment placement and target benchmarks.
- Signed scope of work outlining any planned access cuts and expected restoration footprint.