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Study on Flame Spread over Aviation Kerosene and Diesel

机译:对航空煤油和柴油的火焰分布研究

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Flame spreading over liquid fuels is a common phenomenon involving in accidental fuel leakage in aircraft crash or oil tanker which may result in many casualties and economic losses. Comparative experiments are conducted concerning flame spread over aviation kerosene (RP5) and 0# diesel at a variety of initial fuel temperatures. The threshold value of initial fuel temperature for liquid-phase and gas-phase controlled flame spread is approximately 17 °C larger than liquid's flashpoint for both oils. For a given initial fuel temperature, due to low volatility and ignitability of 0# diesel, its flame spread rate is smaller than that of RP5, while the length of the horizontal subsurface convection flow is larger. Given the difference in flame speed, fire accidents for RP5 are potentially more hazardous than those of 0# diesel. Moreover, the variation trend of subsurface convection flow length falls nearly linearly with the initial fuel temperature for both fuels.
机译:对液体燃料的火焰传播是一种常见的现象,涉及飞机碰撞或油轮的意外燃油泄漏,这可能导致许多伤亡和经济损失。对比较实验在各种初始燃料温度下对航空煤油(RP5)和0#柴油的火焰进行了展开。液相和气相控制火焰扩散的初始燃料温度的阈值约为17°C,比两种油的液体闪光点大。对于给定的初始燃料温度,由于0#柴油的低挥发性和可燃性,其火焰扩散率小于RP5的火焰扩展率,而水平地下对流流的长度较大。鉴于火焰速度的差异,RP5的火灾事故可能比0#柴油更危险。此外,地下对流流量的变化趋势与两个燃料的初始燃料温度几乎线性地落下。

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