Our specialist Fire Safety Services team deliver strategic solutions to support clients in their duty to safeguard buildings and their occupants. We design holistic fire safety strategies tailored to each building’s unique needs, using our expertise to support the client in achieving compliance.

Our services align with clients’ objectives, covering everything from reviewing documentation and designing fire strategies to conducting specialist fire safety analyses, inspections, and risk assessments. We also provide strategic advice, integrating innovative and sustainable solutions at every step.

 

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Specialisms

Fire Safety Engineering

  • Fire Safety Strategy
    • New build (Gateways)
    • Retrospective
  • Fire Computer Modelling
    • CFD modelling
    • Evacuation modelling
    • Radiation modelling
  • Structural Fire Engineering
  • Third-party Peer Review
  • Expert Witness

Fire Safety Surveying

  • Fire Scrutineer
  • Fire Inspection Monitoring
  • Acquisition Due Diligence
  • Passive Fire Protection Inspections
  • Fire Strategy Review
  • Cladding Replacement / PAS 9980 FRAEW
  • Fire Door Inspections
  • Regulation 38 Review
  • Fire Risk Assessments

Fire and Evacuation Modelling

We specialise in delivering advanced Fire and Evacuation Modelling using industry-leading tools, such as PyroSim and Pathfinder.

By integrating high-fidelity Computational Fluid Dynamics (CFD) fire simulations with dynamic evacuation modelling, we provide a comprehensive understanding of how smoke, heat, and human behaviour interact during fire scenarios. This allows us to assess design performance under realistic conditions, whether it’s for high-rise developments, transport infrastructure, or complex commercial spaces.

Assessing Smoke Ventilation Performance

At calfordseaden, we are committed to delivering high-quality Fire Engineering solutions including smoke ventilation design, particularly for complex environments like enclosed car parks.

Computational Fluid Dynamics (CFD) assessment plays a vital role in understanding how smoke and heat behave in different fire scenarios, far beyond what can be captured with steady-state assumptions. It allows us to optimise fan locations and activation strategies, test alternative fire scenarios, and ensures the design supports safe evacuation and firefighting.