Fire Protection Engineering Fire Science, Safety & SystemsPublished 9/2026
MP4 |
Video: h264, 1920x1080 |
Audio: AAC, 44.1 KHz, 2 Ch
Language: English |
Duration: 2h 39m |
Size: 2.37 GB
Master fire science, fire behavior, detection, suppression, and life safety through practical engineering applications.
What you'll learnUnderstand the fundamental principles of fire science, combustion, heat transfer, fire growth, smoke, and explosions.
Analyze how fire develops and spreads through buildings and how materials, ventilation, and compartments influence fire behavior.
Understand the engineering principles behind fire detection, containment, suppression, and life safety systems.
Apply fire protection engineering concepts to evaluate fire hazards and understand how buildings and occupants are protected.
RequirementsNo prior fire protection experience is required. Basic engineering or building systems knowledge is helpful but not necessary.
Description Fire Science and Fire Protection Engineering Fundamentals provides a practical and structured introduction to the science behind fire and the engineering principles used to protect people, buildings, and facilities.
The course begins with the fundamentals of
fire physics and chemistry, explaining how fire starts, how combustion develops, and how energy is released. You will explore the roles of fuel, heat, oxygen, and chemical reactions and understand why different materials behave differently when exposed to fire.
The course then examines
heat transfer, including conduction, convection, and radiation, and shows how these mechanisms influence fire growth and spread within buildings.
You will study
compartment fire dynamics, from ignition and early fire growth through smoke development, flashover, fully developed fire, and decay. Particular attention is given to how ventilation, fuel characteristics, and building geometry affect fire behavior.
The course also introduces the engineering principles behind
fire containment and smoke movement, helping learners understand how fire-rated walls, floors, doors, openings, and compartmentation limit the spread of fire and smoke.
Fire science is then connected directly to
fire detection and alarm systems. You will learn how smoke, heat, and other fire signatures develop and why understanding fire behavior is essential when selecting and applying detection technologies.
The course also explains the fundamental mechanisms of
fire extinguishment and suppression, including cooling, oxygen reduction, fuel removal, and chemical inhibition.
Finally, you will explore the fundamentals of
explosions and rapid energy release, including pressure development and blast effects.
By the end of the course, you will have a strong engineering foundation for understanding
fire behavior, detection, containment, suppression, and life safety-providing essential knowledge for further study and professional work in fire protection engineering.
Who this course is forFire protection, fire alarm, and MEP engineers and designers
Engineering students and professionals interested in fire science
Safety, facility, commissioning, and building systems professionals
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