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Anexo 1. Informe pericial aspectos relacionados al fuego<br />

Schultz, J.J., Warren, M.W. y Krigbaum, J.S., Analysis of Human Cremains: Gross and<br />

Chemical Methods, The Analysis of Burned Human Remains, Academic Press, 2008,<br />

pp. 75-94.<br />

Smith, K.T. and Kennedy Sutherland, E., Fire-scar formation and compartmentalization<br />

in oak, Can. J. For. Res. 29: 166–171 (1999).<br />

Spearpoint, M.J. and Quintiere, J.G., Predicting the Burning of Wood Using and Integral<br />

Model, Combustion and Flame, 123, 3, 308-325, 2000.<br />

Torero, J.L., Vietoris, T., Legros, G., Joulain, P. “Estimation of a Total Mass Transfer<br />

Number from Stand-off Distance of a Spreading Flame,” Combustion Science and<br />

Technology, 174 (11-12), pp.187-203, 2002.<br />

Warren, M.W. and van Deest, T.L. Human Cremation: Commingling and Questioned<br />

Identity, Adams and Byrd Editors, Commingling and Human Remains: Methods in<br />

Recovery, Analysis and Identification, Academic Press, 2014.<br />

7. Anexo 1<br />

Nomenclatura:<br />

J = Joules (unidad de energía)<br />

W = Watts (unidad de potencia)<br />

kW= kilo Watt = 1,000 W<br />

kW/m 2 = energía por unidad de área<br />

MW = Mega Watt = 1,000 kW<br />

G = gramo<br />

kg = kilogramo = 1000 g<br />

a. Calor de Combustión (estimados)<br />

Gas natural: 54 MJ/kg (Drysdale, 2012)<br />

Madera: 20 MJ/kg (Drysdale, 2012)<br />

Neumáticos: 45 MJ/kg (Drysdale, 2012)<br />

Diésel: 45 MJ/kg (Drysdale, 2012)<br />

b. Consumo de combustible por cuerpo<br />

Caso Ideal<br />

423

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