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CPD Resource

Timber Frame Construction — Structural Design

Structural Engineering 🏛️ Designing Buildings ⏱ 2 CPD Hours Free

About this CPD Resource

Structural design principles for platform frame and post-and-beam timber construction, covering structural performance, moisture management and thermal bridging.

Timber frame construction has seen significant growth in the UK residential sector, driven by speed of construction and a favourable embodied carbon profile. For structural engineers and architects specifying timber frame systems, understanding the structural principles, connections, fire performance and moisture management is essential for producing compliant and buildable designs.

Learning Outcomes

  • Understand platform frame and post-and-beam structural systems
  • Apply structural design principles for timber frame buildings
  • Manage moisture and thermal bridging in timber construction
  • Understand fire performance of timber structures
Provider
Designing Buildings
CPD Hours
2 hours
Access
Free
Category
Structural Engineering

Who Is This Suitable For?

Structural engineers
Architects
Housebuilders
Contractors
Building control officers

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Why This CPD Matters

Structural engineering sits at the heart of safe, efficient and sustainable construction. The structural engineer's fundamental duty — ensuring that buildings and infrastructure are safe for their intended use — has been reinforced and scrutinised by the Building Safety Act 2022, which places new competency requirements on those working on higher-risk buildings. The Institution of Structural Engineers and the Institution of Civil Engineers both require their members to demonstrate ongoing competency development through CPD, and structural design practice is constantly evolving through updates to Eurocode standards, new materials and construction methods, and the growing importance of embodied carbon in structural design decisions.

This CPD from Designing Buildings addresses structural engineering knowledge that is directly applicable to professional practice. Whether you are working towards or maintaining Chartered Membership of IStructE or ICE, or seeking to develop your technical knowledge in a specific area of structural practice, structured CPD from recognised providers contributes to the evidence of competency that professional bodies require.

Key Topics and Industry Context

Structural engineering encompasses the analysis, design and verification of load-bearing elements and systems in buildings and infrastructure. The Eurocodes — the European structural design standards adopted across the UK — provide the primary framework for structural design and are periodically updated, requiring practitioners to maintain their knowledge of current requirements. Materials science and construction methods are evolving, with developments in engineered timber, high-strength concrete, glass-fibre reinforced polymer (GFRP) reinforcement and structural steel driving new approaches to design. The assessment and strengthening of existing structures is a growing area of practice as the industry shifts towards retrofit and adaptation of the existing building stock.

This resource from Designing Buildings provides structured learning in an aspect of structural engineering practice that is relevant to professionals at all career stages, from graduates developing their foundational knowledge to experienced engineers updating their understanding of current standards and practice.

How This Fits Your CPD Requirements

IStructE requires all Chartered Members (MIStructE) and Fellows (FIStructE) to complete a minimum of 30 hours of CPD per year, of which at least 16 hours should be structured activities with defined learning objectives. ICE does not set a fixed annual minimum but requires members to maintain a CPD record demonstrating ongoing development. The Engineering Council's UK Standard for Professional Engineering Competence (UK-SPEC) requires all professionally registered engineers to demonstrate commitment to continuing competency development. Structural engineering CPD from recognised providers such as this one contributes directly to meeting these requirements.

What is platform frame construction?
Platform frame is the most common form of timber frame in the UK. Each floor level is framed separately, with the floor platform supporting the walls above.
How is fire resistance achieved?
Fire resistance in timber frame is typically provided by plasterboard linings protecting the structural timber. The number and type of plasterboard layers determines the fire resistance period.
What structural timber products are used?
Main structural products include C16 and C24 stress-graded timber, engineered lumber (LVL, glulam, I-joists), and structural insulated panels (SIPs).

About Timber Frame Construction — Structural Design

Timber frame construction has seen significant growth in the UK residential sector, driven by speed of construction and a favourable embodied carbon profile. For structural engineers and architects specifying timber frame systems, understanding the structural principles, connections, fire performance and moisture management is essential for producing compliant and buildable designs.

This resource is provided by Designing Buildings (Designing Buildings) and is suitable for Structural engineers, Architects, Housebuilders and other construction professionals. It contributes 2 CPD hours towards professional body requirements including CIOB, ICE, RIBA and RICS.