By Dougal Drysdale(auth.)
Chapter 1 hearth technological know-how and Combustion (pages 1–34):
Chapter 2 warmth move (pages 35–82):
Chapter three Limits of Flammability and Premixed Flames (pages 83–119):
Chapter four Diffusion Flames and fireplace Plumes (pages 121–179):
Chapter five regular Burning of beverages and Solids (pages 181–223):
Chapter 6 Ignition: The Initiation of Flaming Combustion (pages 225–275):
Chapter 7 unfold of Flame (pages 277–315):
Chapter eight Spontaneous Ignition inside Solids and Smouldering Combustion (pages 317–348):
Chapter nine The Pre?Flashover Compartment fireplace (pages 349–386):
Chapter 10 The Post?Flashover Compartment hearth (pages 387–439):
Chapter eleven Smoke: Its Formation, Composition and flow (pages 441–474):
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Additional info for An Introduction to Fire Dynamics, Third Edition
16) (Griffiths and Barnard, 1995; Simmons, 1995; Griffiths, 2008). 16). g. 16). The rate of oxidation of methane may be equated to its rate of removal by reactions b–d. , Moore (1972) or Atkins and de Paula (2006). 28 An Introduction to Fire Dynamics where the square brackets indicate concentration, and kb , kc and kd are the appropriate rate coefficients (cf. 1)). Clearly, the rate of removal of methane depends directly on the concentrations of free atoms and radicals in the reacting system. e.
16). g. 16). The rate of oxidation of methane may be equated to its rate of removal by reactions b–d. , Moore (1972) or Atkins and de Paula (2006). 28 An Introduction to Fire Dynamics where the square brackets indicate concentration, and kb , kc and kd are the appropriate rate coefficients (cf. 1)). Clearly, the rate of removal of methane depends directly on the concentrations of free atoms and radicals in the reacting system. e. 16). In this respect the hydrogen atom is arguably the most important of the reactive species in the system.
3 Calculate the vapour pressure of the following pure liquids at 0◦ C: (a) n-octane; (b) methanol; (c) acetone. 4 Calculate the vapour pressures of n-hexane and n-decane above a mixture at 25◦ C containing 2% n-C6 H14 + 98% n-C10 H22 , by volume. Assume that the densities of pure n-hexane and n-decane are 660 and 730 kg/m3 , respectively and that the liquids behave ideally. 5 Calculate the vapour pressures of iso-octane and n-dodecane above a mixture at 20◦ C containing 5% i-C8 H18 and 95% n-C12 H26 , by volume.