Thermal bridging occurs when heat bypasses insulation through more conductive materials or structural elements within the building envelope. While often considered a detailing issue, its impact extends far beyond individual components – influencing whole-building performance, energy efficiency and occupant comfort.
In commercial buildings, unaddressed thermal bridging can reduce the effectiveness of insulation, increase heating and cooling demand, and contribute to higher operational energy use and associated greenhouse gas emissions. It can also affect internal surface temperatures, with implications for indoor environmental quality and condensation risk.
This CPD presentation by Fletcher Insulation explores thermal bridging within the context of NCC Volume One, with a focus on Deemed-to-Satisfy compliance pathways commonly used in commercial construction.
It examines how thermal bridging is considered in Total R-Value and Total System U-Value calculations, and why accounting for these effects is essential to achieving compliance with Section J. The presentation also outlines where thermal bridges typically occur within building envelopes and highlight practical design considerations to minimise their impact.
1 Formal CPD Point
This presentation has been reviewed and approved for Formal CPD through the Australian Institute of Architects’ Refuel CPD Provider Program.
Learning Outcomes
At the end of this CPD presentation you should be able to:
- Define thermal bridging and explain how it occurs in commercial building assemblies
- Identify common locations where thermal bridging occurs
- Explain how thermal bridging influences Total R-Value and Total System U-Value calculations
- Outline the role of thermal bridging in NCC Section J compliance
- Apply design considerations to reduce the impact of thermal bridging on building performance.
