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Sheet A-101
PPDPDD CE

Enclosureconcept

The four enclosure control layers: water, air, vapor, thermal

One-line orientation

An enclosure has to control four things at once — bulk water, air, vapor, and heat — and the key tested distinction is that the water-resistive barrier, the air barrier, and the vapor retarder are three different jobs, not one membrane.

Key points

  • The four control layers (each must be continuous across the whole skin):
    • Bulk water (rain) control — the largest, most damaging load, handled in three lines of defense:
      • Rain screen: outer face/cladding that sheds most direct water.
      • Drainage plane: the path that redirects water getting past the rain screen back to the exterior.
      • Water-resistive barrier (WRB) / water control layer: the primary moisture barrier — peel-and-stick membranes, liquid-applied systems, or building wraps.
    • An air barrier stops air from leaking through the enclosure. OSB can be part of that system only when the panel, seams, penetrations, and transitions meet the required air-tightness.
    • Vapor control — a vapor retarder slows vapor diffusion through materials (its own card).
    • Thermal controlinsulation controls heat flow (its own card).
  • Plan a drying path: design the assembly to dry inward, outward, or both, as appropriate. Keep every control layer continuous at corners, openings, and penetrations.
  • Air vs vapor are different mechanisms: air leakage moves moisture in bulk (whole air masses); vapor diffusion moves it slowly through materials. Air leakage usually moves far more moisture, so the two are handled separately.

Confusions / comparison

LayerControlsMechanism it stopsTypical materials
Water-resistive barrier (WRB)Bulk/liquid water behind the claddingLiquid water intrusionPeel-and-stick membrane, liquid-applied, building wrap
Air barrierAir movement through the assemblyBulk air leakage (drafts)Exterior gypsum, OSB, house wrap, membranes, closed-cell foam, glass, metal, roof membrane
Vapor retarderVapor moving through materialsVapor diffusion(see vapor retarder card — perm classes)
Thermal / insulationHeat flowConduction (and convection in cavities)(see insulation card — by R/inch)

→ Insulation types compared (this topic): the thermal control layer in depth · Vapor retarders: perm classes and placement (this topic): the vapor control layer in depth · Window and door performance and frame details (this topic): where control layers must stay continuous at openings · Roof low-slope membranes (Construction): roofing as the water/air control layer overhead.

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