Gather drawings, photographs, and past energy bills, then walk every floor with a flashlight and notebook. Note previous repairs, paint layers, vent paths, and stains. Interview long-term occupants about seasonal drafts and condensation. This narrative frames testing priorities, reduces invasive probing, and builds trust before any equipment is unpacked.
Identify masonry type, mortar composition, timber species, and surface finishes using visual clues and minimal sampling where permitted. Solid walls behave through thermal mass and capillary action; cavity assumptions mislead. Knowledge of permeability and hygroscopic behavior shapes safe diagnostic choices and later retrofit options, avoiding trapped moisture and unintended decay.
Set intentions that prioritize reversibility, minimum intervention, and documentation. Explain to stakeholders how every reading will inform conservation, not impose a standardized fix. Align inspection scope with legal protections and community values. When dilemmas arise, slow down, share evidence, and let significance guide the next respectful step.
Log indoor and outdoor humidity alongside surface temperatures across winter and spring. Identify when dew points intersect plaster or window glass, then compare with occupant routines like cooking or showering. This evidence guides ventilation tweaks, fixture choices, and retrofits that relieve damp without stripping away beautiful, timeworn finishes.
Chase smoke trails around knee walls, chimney chases, sill plates, and service penetrations. In a windswept 1890s terrace, a loose attic hatch caused astonishing heat loss until a felt strip calmed the whispering gap. Photograph findings and mark locations on sketches. Small, reversible seals at these junctions improve comfort noticeably, yet retain the building’s ability to breathe through intended pathways.
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