About this CPD Resource
RIBA-approved CPD covering fire safety compliance for rainscreen and masonry facade systems on high-rise residential buildings over 18 metres, including legislation across England, Wales and Scotland.
Following Grenfell, facade fire safety has become one of the most scrutinised areas of construction specification. This RIBA-approved Kingspan CPD focuses specifically on high-rise residential buildings of 18 metres or more, covering both rainscreen and masonry cavity wall facades. It provides architects and specifiers with a clear understanding of the regulatory requirements and routes to compliance, including the differences between England, Wales and Scotland — an important distinction as Welsh and Scottish regulations have diverged from England in several respects.
Learning Outcomes
- Understand fire safety requirements for facades over 18 metres
- Apply Building Regulations compliance routes for rainscreen facades
- Distinguish legislative differences between England, Wales and Scotland
- Evaluate facade system performance against fire safety requirements
Who Is This Suitable For?
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Why This CPD Matters
Fire safety has become one of the most scrutinised areas of construction specification and professional practice following the Grenfell Tower fire of 2017. The subsequent Hackitt Review, the Building Safety Act 2022, the Building (Amendment) Regulations 2018 and the ongoing work of the Building Safety Regulator have fundamentally changed the regulatory landscape for buildings — particularly higher-risk residential buildings of 18 metres or more. For construction professionals, keeping pace with these changes is not just a matter of good practice; it is a professional competency requirement.
The Fire Safety Act 2021 and Building Safety Act 2022 have introduced new roles and responsibilities — including the Principal Designer and Principal Contractor under the Building Safety Regulations — that require demonstrable competency in fire safety. This CPD from Kingspan Insulation Limited contributes directly to that competency development, covering aspects of fire safety that are directly relevant to specification, design and construction practice in the current regulatory environment.
Key Topics and Industry Context
Fire safety in buildings encompasses a wide range of technical and regulatory considerations. Passive fire protection — the use of construction materials and systems to contain fire and prevent its spread — is fundamental to building design and requires understanding of fire resistance ratings, compartmentation principles and the performance of specific construction products under fire conditions. Active fire protection systems including sprinklers, smoke detection and alarm systems require coordination between architectural, structural and building services design. The external wall and facade system is now one of the most closely scrutinised elements of any building following Grenfell.
This resource from Kingspan Insulation Limited provides structured learning on fire safety topics that are directly applicable to construction practice. Professionals working on higher-risk buildings — defined under the Building Safety Act as residential buildings of 18 metres or more — have particular need for up-to-date fire safety knowledge, and this CPD contributes to the competency evidence that the Building Safety Regulator may require.
How This Fits Your CPD Requirements
Fire safety CPD is relevant across multiple professional bodies. RIBA includes fire safety within its mandatory core curriculum, meaning RIBA Chartered Members must engage with this topic as part of their 35 hours of annual CPD. RICS members working in building surveying, project management or development consultancy need fire safety knowledge to advise clients effectively on compliance. CIOB members managing construction projects on higher-risk buildings need to understand the fire safety requirements that affect their programme and specification. ICE members involved in structural or civil engineering on residential buildings need awareness of the interface between structural design and fire safety requirements.