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The Fire Behavior and Combustion Handbook: A Practical Guide to Ignition, Flame Spread, and Smoke Movement for Fire Officers and Safety Engineers - Couverture souple

Sterling, Nathaniel K.

 
9798194351749: The Fire Behavior and Combustion Handbook: A Practical Guide to Ignition, Flame Spread, and Smoke Movement for Fire Officers and Safety Engineers

Synopsis

Fire is one of the very few engineering problems in which the thing being studied reshapes the conditions that govern it. A structural load does not grow because the beam deflected. A fire heats its own fuel, alters its own ventilation, and changes its own chemistry as it develops, so the equations that describe it at one minute are not the equations that describe it at the next. That feedback is what makes fire behavior difficult, and it is why the subject rewards rigor over rule of thumb.

It is also where most practitioners are left without support. Officers and investigators are trained extensively in what fire does and given comparatively little of the quantitative apparatus that explains why. Engineers are trained in heat transfer, thermodynamics, and fluid mechanics and are rarely shown how those subjects combine into a defensible prediction of what a burning room will do to the people inside it. The consequence appears in real work: an analyst who cannot say whether an observed burn pattern is consistent with the timeline being proposed, or a designer who selects a design fire because it appeared in a previous project rather than because it can be justified from the fuel package actually present.

This handbook develops the subject from first principles and carries every principle through to a number. Combustion chemistry establishes what a fuel can release; thermochemistry converts that into energy; heat transfer determines how the energy reaches unburned material; ignition theory determines whether that material lights; flame spread determines how quickly the burning area grows; and heat release rate assembles all of it into the single curve on which nearly every subsequent calculation depends.

  • Follow every derivation from stated assumptions, with the intermediate steps a compressed treatment would omit
  • Work fully solved examples in which every step, every unit conversion, and every assumption is visible
  • Construct a heat release rate curve from evidence rather than borrowing one from a table
  • Identify which correlations are empirical, what their validity ranges are, and what exceeding those ranges costs
  • Assess smoke production, visibility and tenability, and calculate detector and sprinkler response
  • Move fluently between the International System of Units and United States customary equivalents
  • Test comprehension against graded practice problems whose answers are derivable from the chapter itself
Sixteen chapters run from the fire tetrahedron and stoichiometry through flash point and flammability limits, premixed and diffusion flames, buoyant plumes and ceiling jets, compartment fire stages and ventilation effects, flashover and backdraft thresholds, fully developed fires and structural exposure, smoke production and toxicity, detection and suppression, and performance-based analysis. The chapter order is a dependency chain, so each chapter supplies exactly what the next one assumes. Six appendices consolidate unit conversions, material and fuel property data, species and soot yields, representative peak heat release rate values, and the complete equation set.

Written for practicing and trainee fire protection and safety engineers, fire officers and instructors seeking the physical basis of phenomena they already recognize, investigators and analysts testing a proposed sequence against physics, plans examiners, and students working towards coursework or certification examinations.

Open the handbook and start building the quantitative apparatus that turns a description of fire behavior into a calculation you can defend.

Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.