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Titlebook: SFPE Handbook of Fire Protection Engineering; Morgan J. Hurley (Editor-in-Chief),Daniel Gottuk,C Book 20165th edition Society of Fire Prot

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https://doi.org/10.1007/978-1-4939-2565-0Best practices; Configuration factors; Conversion factors; Fire alarms; Fire dynamics; Fire load density;
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Chemical Equilibrium,The temperature of a flame must be known in order to calculate convective and radiative heat transfer rates, which control pool-fire burning rates, flame spread rates, remote ignitions, damage to exposed items (e.g., structural steel, wiring), and response of thermal fire detectors or automatic sprinklers.
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Vent Flows,Fire releases a great amount of heat that causes the heated gas to expand. The expansion produced by a fire in a room drives some of the gas out of the room. Any opening through which gas can flow out of the fire room is called a .
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Ignition of Liquids,The purpose of this chapter is to discuss the ignition characteristics of combustible liquids that are in widespread use as fuels and solvents and are encountered as process fluids in the chemical and process industries. Ignition leads to flaming combustion in which the fuel undergoes a change of state and is converted from liquid to vapor.
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Morgan J. Hurley (Editor-in-Chief),Daniel Gottuk,CThe definitive reference on fire protection engineering, now expanded to three volumes.Available in electronic format for the first time.An indispensible source for reliable coverage of fundamentals,
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Conduction of Heat in Solids,that heat can be transferred have been termed conduction, convection, and radiation. In this chapter, the basic physics associated with conduction heat transfer will be elaborated, and it will be shown through examples how the tools and analysis typically used for conduction problems can be applied to design and analysis when fire occurs.
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