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- W2051072838 abstract "Abstract A new version of a watercooled and nitrogen-purged fiber-optic absorption probe is described. The probe measures absorption of infrared diode radiation at 0.96 μm by double-pass over a path length of 60 mm. The new design was successful in suppressing thermal expansion effects on optical alignment present in an earlier design. Vertical centerline traverses have been performed with propylene pool fires of 381-mm dia. for flow rates ranging from 230 to 1400 ml/s (18 to 110 kW) and of 762-mm dia for flow rates from 1300 to 3465 ml/s (102 to 273 kW). Maximum values of the absorption coefficient were found to correlate in a plot vs. fuel flow velocity which showed an abrupt decrease of slope at a velocity of 5 mmls. Vertical centerline traverses were also performed with 50 kW 381-mm dia. fires of ethane, ethylene and propane, in addition to propylene. The maximum absorption coefficient kmax (m-1) for these fires was found to be related to the length of laminar diffusion flames at the soot point L, (mm) by the expression Soot volume fractions computed from kmsx values ranged from 1x10-7 for a 381-mm dia. 50 kW ethane fire to 1.9X10-6 for a 381-mm dia. 110 kW propylene fire. Horizontal traverses of propylene 381-mm dia. 50 kW and 762-mm dia. 178 kW fires yielded near-Gaussian distributions of the absorption coefficient at the height of maximum centerline absorption. Correction factors for the measured kmax to account for the finite width of the probe test gap computed from the horizontal distributions were 1.06 for the 381-mm dia. and 1.02 for the 762-mm dia. fire. These corrections were considered too small to be taken into account in the vertical traverse data. Asymmetries in the horizontal traverses were tentatively ascribed to nonuniform porosity of the sintered-metal burners." @default.
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- W2051072838 date "1984-08-01" @default.
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- W2051072838 title "Measurements on Gaseous-Fuel Pool Fires with a Fiber-optic Absorption Probe" @default.
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- W2051072838 doi "https://doi.org/10.1080/00102208408923790" @default.
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