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1. Calculate the heat flux, 25m from the flame surface in the direction of the wind, from a 10 m pool diameter of n-hexane. The

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1. Calculate the heat flux, 25m from the flame surface in the direction of the wind, from a 10 m pool diameter of n-hexane. The following data are available: Boiling temperature, Tb:341.9K Heat of combustion, Hc:44700kJ/kg Heat of vaporization, Hv:334kJ/kg Specific heat capacity, Cp:1.7kJ/kgK Ambient temperature, Ta:278K Soot surface emitting power, SEPs0ot:20kW/m2 Wind velocity, uw:5m/s Density of air, air:1.21kg/m3 Liquid density at boiling temperature, L:616kg/m3 Viscosity of air, air:16.7Pas Saturation water vapor pressure, PW:2320kPa Relative humidity, RH:0.8 Radiation Fraction, F5:0.2 Please use Mundan method and Thomas method for burning rate and flame length calculations, respectively. Consider 20% of the flame surface fraction is not covered by soot. You may assume 49.6 as flame tilt angle towards the receptor. Please list all the steps properly and then try to solve the problem. 45%

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