Course Content
By the end of the course, participants will be able to explain how thermal bridging occurs in different residential construction systems and assess its impact on building performance and condensation risk. They will understand how current NCC requirements apply to thermal performance and how future changes may influence design decisions. Participants will be able to identify high risk junctions and select appropriate mitigation strategies during the design stage. They will also be equipped to produce clear, buildable documentation that accurately reflects thermal performance assumptions. In addition, they will be able to coordinate effectively with energy assessors to ensure alignment between design intent, modelling inputs and compliance outcomes.
Learning Outcomes
This ensures that CPD efforts align with professional regulatory requirements.
This CPD provides general guidance on professional responsibilities and documentation practices. It does not constitute legal advice or replace project-specific contractual or statutory obligations.
Compliance and Accreditation
|
Framework/Body |
Relevant Sections |
Focus Areas |
|
National Construction Code (NCC 2022) |
PC10, PC28, PC31, PC33, PC45 |
PC28 (building sciences and technology) is directly relevant as the course focuses on thermal bridging physics, heat transfer, and the performance gap between nominal and effective R-values in residential assemblies. |
|
NatHERS Protocols |
NatHERS Technical Note, software modelling conventions (AccuRate, FirstRate5, BERS Pro) |
Correction factors for framing, limitations of system-level modelling, gap between modelled vs actual performance, Whole-of-Home energy pathways |
|
ABSA CPD Competency Area |
Thermal performance, energy efficiency, building fabric assessment |
Accurate modelling assumptions, junction-level heat loss awareness, coordination between design and assessment, documentation transparency |
|
Building Designers |
NCC compliance, documentation practices, residential detailing standards |
Junction detailing, thermal break integration, design-stage mitigation, aligning drawings with performance intent |
|
NSCA 2021 (Architects) |
PC28, PC31; PC36–47; PC46; PC33 |
Environmental performance integration, design resolution of junctions, documentation accuracy, coordination with consultants, sustainability outcomes |
|
Engineers Australia (Stage 2) |
PE2, PE3 |
Building physics, heat transfer analysis, junction performance, integration of structural and thermal systems |
|
Licensed Builders (State CPD) |
State-based energy efficiency provisions, NCC compliance obligations |
Constructability of thermal breaks, installation quality, maintaining insulation continuity, site execution risks |
|
Building Surveyors |
NCC assessment framework, Performance Solution review processes |
Verification of thermal performance assumptions, documentation review, compliance risk at junctions, certification evidence requirements |
This session is designed for

Architects

Building Designers

Energy Assessors

Building Surveyors

Residential Builders
What’s Included
This course examines how thermal bridging occurs in Australian residential buildings and how it affects overall thermal performance and condensation risk. It explores the regulatory context under NCC 2022 and considers emerging expectations from the NCC 2025 preview. The course looks closely at common junctions where heat loss occurs and the design strategies used to reduce these impacts. It also examines the role of documentation, modelling and communication in achieving accurate energy assessments and compliance. Finally, it reviews real project scenarios to illustrate the consequences of both effective and inadequate thermal bridging design decisions.

Why Take This CPD Session?

Improve your ability to design buildings that perform as intended by addressing hidden heat loss at junctions.

Reduce compliance risk by understanding how thermal bridging affects NCC requirements and energy assessments.

Strengthen your documentation and coordination practices to avoid costly errors and performance gaps during construction.
Professional development is an investment in career growth and regulatory compliance. Take the next step today.