SFPE Handbook of Fire Protection EngineeringMorgan J. Hurley, Daniel T. Gottuk, John R. Hall Jr., Kazunori Harada, Erica D. Kuligowski, Milosh Puchovsky, Jose ́ L. Torero, John M. Watts Jr., CHRISTOPHER J. WIECZOREK Revised and significantly expanded, the fifth edition of this classic work offers both new and substantially updated information. As the definitive reference on fire protection engineering, this book provides thorough treatment of the current best practices in fire protection engineering and performance-based fire safety. Over 130 eminent fire engineers and researchers contributed chapters to the book, representing universities and professional organizations around the world. It remains the indispensible source for reliable coverage of fire safety engineering fundamentals, fire dynamics, hazard calculations, fire risk analysis, modeling and more. With seventeen new chapters and over 1,800 figures, the this new edition contains:
“Three-volume set; not available separately” |
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Acid by-products such as Hydrofluoric acid are not produced during the deployment of condensed aerosols. These products are produced during the extinguishing process of some HCFC gases when they reach certain temperatures.
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Common terms and phrases
analysis ASTM Babrauskas boundary layer burner burning calculated calorimeter carbon ceiling jet char chemical chemical kinetics concentration concrete Cone Calorimeter constant convective correlations decomposition density diameter diffusion flame effect electrical emissivity energy Equation equivalence ratio example experimental fire plume Fire Protection Engineering Fire Safety fire tests flame height flame spread flame temperature flammable limit flashpoint flow rate fluid fraction fuel function gases heat flux heat of combustion heat release rate heat transfer coefficient Heskestad ignition source increase insulation kinetic laminar liquid mass materials measured mechanism method mixture molecules occur oxidation oxygen parameters peak HRR polymer polyurethane premixed flame pressure propagation properties pyrolysis radiation reactants reaction sample shown in Fig smoke smoldering solid species specimen structural surface Table thermal conductivity tion turbulent typically values vapor velocity vent wall