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Automation Risk Analysis

Will “Licensed Fire Protection Engineer” be Automated?

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AI Exposure Risk

40%

“Licensed Fire Protection Engineer” will probably not be replaced by AI.

Based on the cognitive demands, communication requirements, and logical reasoning intrinsic to this occupation according to O*NET data, we project a 40% probability of disruption by generative AI and Large Language Models.

Automation & Robot Risk

27%

“Licensed Fire Protection Engineer” will almost certainly not be replaced by robots.

Evaluating the physical dexterity, repetitive motion tasks, and manual labor associated with this role, our analysis indicates a 27% likelihood of substitution by advanced robotics systems.

Personal & Financial Insights

Every occupation has a unique profile. For Fire-Prevention and Protection Engineers, the Bureau of Labor Statistics and O*NET classify the day-to-day work broadly as: Research causes of fires, determine fire protection methods, and design or recommend materials or equipment such as structural components or fire-detection equipment to assist organizations in safeguarding life and property against fire, explosion, and related hazards.

Job Title & Hierarchy Code (SOC) Fire-Prevention and Protection Engineers #17-2111.02
ℹ️

Data is based on the reference occupation: “Fire-Prevention and Protection Engineers”

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Core Skills & Abilities

  • Inspect buildings or building designs to determine fire protection system requirements and potential problems in areas such as water supplies, exit locations, and construction materials.

  • Prepare and write reports detailing specific fire prevention and protection issues, such as work performed, revised codes or standards, and proposed review schedules.

  • Attend workshops, seminars, or conferences to present or obtain information regarding fire prevention and protection.

  • Study the relationships between ignition sources and materials to determine how fires start.

  • Consult with authorities to discuss safety regulations and to recommend changes as necessary.

  • Develop plans for the prevention of destruction by fire, wind, and water.

  • Review building plans to verify compliance with fire code.

  • Determine causes of fires and ways in which they could have been prevented.

  • Develop training materials and conduct training sessions on fire protection.

  • Advise architects, builders, and other construction personnel on fire prevention equipment and techniques and on fire code and standard interpretation and compliance.

  • Direct the purchase, modification, installation, testing, maintenance, and operation of fire prevention and protection systems.

  • Design fire detection equipment, alarm systems, and fire extinguishing devices and systems.

  • Conduct research on fire retardants and the fire safety of materials and devices.

  • Evaluate fire department performance and the laws and regulations affecting fire prevention or fire safety.

Technologies & Software

  • Autodesk AI
  • Mechanical electrical plumbing MEP design software
  • Autodesk Revit
  • Link actuated vents LAVENT software
  • Human modeling software
  • ChatGPT (OpenAI)
  • Load-bearing analysis software
  • Perplexity AI
  • Computational Dynamics STAR-CD
  • Fluent FloWizard
  • Data acquisition software
  • Consolidated fire and smoke transport model CFAST
  • Microsoft Word
  • Microsoft Excel
  • Crows Dynamics Simulex
  • Interconsult Brann G-JET
  • Consolidated compartment fire model CCFM
  • Available Safe Egress Time ASET
  • Detector Actuation Quasi Steady DETACT-QS
  • Network flow modeling software
  • GitHub Copilot
  • Analysis of Smoke Control Systems ASCOS
  • Zone modeling software
  • Gemini Code Assist
  • Large eddy simulation LES software
  • Berkeley Algorithm for Breaking Window Glass in a Compartment Fire BREAK1
  • Bentley MicroStation
  • Microsoft Windows
  • ANSYS AI Simulation
  • Microsoft PowerPoint
  • AutoCAD AI
  • Finite element method FEM software
  • CESARE Risk
  • Computational fluid dynamics CFD software
  • Microsoft Visio
  • Word processing software
  • Fire Response of Structures Thermal FIRES-T software
  • Fire dynamics simulators
  • Fire Protection Engineering Tools FPETool software
  • Elevator evacuation ELVAC software
  • Fire Simulation Technique FIRST software
  • Atria smoke management engineering tools ASMET
  • A Large Outdoor Fire plume Trajectory model Flat Terrain ALOFT-FT
  • Egress EVACS
  • Building Research Establishment BRE Jasmine
  • ANSYS simulation software
  • Simulation of fires in enclosures SOFIE software
  • Autodesk AutoCAD
  • Microsoft Office software
  • Microsoft Project
  • Computer aided design CAD software
  • Evacuation modeling software
  • Mean time to failure MTTF software
  • JET
  • FIRECALC fire zone modeling software
  • Egress Allsafe
  • Silicon photodiodes
  • Oxygen meters
  • Oxygen depletion calorimeters
  • Smoke density testers
  • Wall panel furnaces
  • Desktop computers
  • Thermocouples
  • Counter-flow slot burners CSB
  • Digital cameras
  • Silica-carbide fiber sensors
  • Furniture calorimeters
  • Helium-neon lasers
  • Tube furnaces
  • Propane diffusion flame burners
  • Oxygen analyzers
  • Flame spread testers
  • Flammability testers
  • Heat flux transducers
  • Horizontal furnaces
  • Intermediate scale calorimeters
  • Orifice-plate flowmeters
  • Methane burners
  • Optical filters
  • Cone calorimeters
  • Load cells
  • Heat sinks
  • Notebook computers
  • Mass flow controllers
  • Room calorimeters
  • Radiant heaters
  • Steiner tunnel furnaces
  • Flow tunnels
  • Collection hoods
  • Floor-ceiling furnaces
  • Photoelectric cells
  • Sampling probes