STAGING ENVIRONMENT
EXIT

Create An Account

Thank you for choosing to create an account with us.

Please note that creating an account is optional, but helps us better tailor the content we show you.


Please enter your email address and choose a password.

By creating an account, you agree to our Terms and Conditions and our Privacy Policy

Log in

Tell us a little about yourself


Choose Areas of Interest

Please tell us a little more about your profession.

This is optional, but lets us better tailor content to your specific interests.


You can read our policy on data collection and privacy here.

Channels that Interest You

Finally, check which channels interest you so you can see more relevant content. Choose as many as you like. You can also come back here and edit these settings later.


Home Unbuild It | Episode 163: Back to Basics: Vapor Control Layers Explained
Advertisement
Advertisement

Unbuild It | Episode 163: Back to Basics: Vapor Control Layers Explained

It is truly sad that vapor is so misunderstood in buildings. To quote Steve: "It's just not the big bad monster everyone in our industry thinks it is. Vapor is not a liability; it is an asset." In most buildings and most climates, it is drying assemblies by way of vapor diffusion that keeps them safe if--or more accurately--when they get wet. To be fair, the code language requiring interior vapor retarders on the warm-in-winter side of building assemblies for many many years was wrong, confusing, and not based on building science.

If focusing on vapor means how it contributes to drying--not wetting--then we need to know the vapor permeability of EACH AND EVERY layer in any building assembly. So, where do we get that info? For generic materials, go to the BSC Building Materials Property Table (see resource below). For specific building materials, go to manufacturer tech support and demand vapor permeability standardized test results for every material they sell you.

Finally: building professionals and homeowners need to know the moisture content of the air in their buildings and many buildings don't have built-in hygrometers as part of their thermostats. Measuring humidity electronically is not easy so accurate hygrometers can't be had for a Jackson; more like a C-note...

PETE'S RESOURCES:
- Water in Buildings: An Architect's Guide to Moisture and Mold - https://www.wiley.com/en-us/shop/general-introductory-architecture/water-in-buildings-an-architect's-guide-to-moisture-and-mold
- "Vapor Profiles Help Predict Whether a Wall Can Dry" - https://www.greenbuildingadvisor.com/article/vapor-profiles-help-predict-whether-a-wall-can-dry
- ICC Digital Codes R702.7 Vapor retarders - https://codes.iccsafe.org/s/IRC2021P2/part-iii-building-planning-and-construction/IRC2021P2-Pt03-Ch07-SecR702.7 NOTE: NOT required in wall assemblies in Climate Zones 1 - 3.
- BSC Building Material Property Table - https://buildingscience.com/documents/information-sheets/building-materials-property-table
-"Measuring (and Understanding) Humidity" - https://www.greenbuildingadvisor.com/article/measuring-and-understanding-humidity
- NOTE: For building science geeks: "ASTM E96: Explaining Water Vapor Transmission Rate Testing" - https://blog.ansi.org/ansi/explaining-water-vapor-testing-astm-e96/
- BuildingScienceAdvisor - https://bsa.ornl.gov.

Huge thanks to our episode sponsor, Diamond Kote. Learn more at: https://diamondkotesiding.com/

Showing result 1 to 8 of 45