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Importance of the slick thickness for effective in-situ burning of crude oil

机译:浮油厚度对于有效地就地燃烧原油的重要性

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摘要

In order to improve the potential of in-situ burning (ISB), the importance of the oil slick thickness on two pure oils (n-octane and dodecane) and two fresh crude oils (Grane and REBCO) was studied in relation to the regression rate, boilover tendency, mass loss rate, burning efficiency and flame height. The experiments were performed in a new experimental apparatus, the Crude Oil Flammability Apparatus (COFA), which has been developed to study BB of oil on water in a controlled laboratory environment with large water-to-oil ratios. The regression rate, average mass loss rate and burning efficiency reached a constant maximum value for all oils at slick thicknesses exceeding 10-20 mm. For thinner initial slick thicknesses, these values were greatly reduced, most likely due to heat losses to the water. A further increase in the initial slick thickness could not improve the burning efficiency above 75% for the crude oils, showing that it only has a limited effect on the burning efficiency as higher burning efficiencies have been reported for larger scales. Furthermore, the results showed that the burning mechanisms differ for pure and crude oil, indicating that the hydrocarbon mixture in crude oils changes as the burning progresses. This observation merits further research. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了提高原位燃烧(ISB)的潜力,研究了与回归有关的浮油厚度对两种纯油(正辛烷和十二烷)和两种新鲜原油(Grane和REBCO)的重要性。率,沸腾趋势,质量损失率,燃烧效率和火焰高度。实验是在一种新的实验设备,即原油可燃性设备(COFA)中进行的,该设备已开发用于在水油比大的受控实验室环境中研究水上油的BB。当油的厚度超过10-20 mm时,所有油的回归率,平均质量损失率和燃烧效率均达到恒定的最大值。对于较薄的初始浮油厚度,这些值会大大降低,这很可能是由于水的热量损失所致。初始浮油厚度的进一步增加不能将原油的燃烧效率提高到75%以上,这表明它对燃烧效率的影响有限,因为据报导较大规模的燃烧效率更高。此外,结果表明,纯油和原油的燃烧机理不同,表明原油中的烃混合物随燃烧的进行而变化。这种观察值得进一步研究。 (C)2015 Elsevier Ltd.保留所有权利。

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