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Spark Ignition Energy Measurements in Jet A

机译:喷气A的火花点火能量测量

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摘要

Experiments have been carried out to measure the spark ignition energy of Jet A vapor in air. A range of ignition energies from 1 mJ to 100 J was examined in these tests. The test method was validated by first measuring ignition energies for lean mixtures of the fuels hexane (C6H6) and propane (C3H8) in air at normal temperature (295 K) and pressure (1 atm). These results agree with existing data and provide new results for compositions between the lean flame limit and stoichiometric mixtures. Jet A (from LAX, flashpoint 45–48 [degress] C) vapor mixtures with air have been tested at temperatures between 30 and 60 [degrees] C at two fuel mass loadings, 3 and 200 kg/m3, in an explosion test vessel with a volume of 1.8 liter. Tests at 40, 50, and 60 [degrees] C have been performed at a mass loading of 3 kg/m3 in an 1180-liter vessel. Experiments with Jet A haveudbeen carried out with initial conditions of 0.585 bar pressure to simulate altitude conditions appropriate to the TWA 800 explosion. ududIgnition energies and peak pressures vary strongly as a function of initial temperature, but are a weak function of mass loading. The minimum ignition energy varies from less than 1 mJ at 60 [degrees] C to over 100 J at 30 [degrees] C. At temperatures less than 30 [degrees] C, ignition was not possible with 100 J or even a neon sign transformer (continuous discharge). The peak pressure between 40 and 55 [degrees] C was approximately 4 bar. Peak pressures in the 1180-liter vessel were slightly lower and the ignition energy was higher than in the 1.8-liter vessel. ududThe following conclusions were reached relative to the TWA 800 crash: (a) spark ignition sources with energies between 5 mJ and 1 J are sufficient to ignite Jet A vapor, resulting in a propagating flame; (b) the peak pressure rise was between 1.5 and 4 bar (20 and 60 psi). (c) a thermal ignition source consisting of a hot filament created by discharging electrical energy into a metal wire is also sufficient to ignite Jet A vapor, resulting in a propagating flame; (d) laminar burning speeds are between 15 and 45 cm/s; and (e) the limited amount of fuel available in the CWT (about 50 gal) did not significantly increase the flammability limit. ududThe rapid decrease in spark ignition energy with increasing temperature demonstrates that hot fuel tanks are significantly more hazardous than cool ones with respect to spark ignition sources. A systematic effort is now needed in order to utilize these results and apply spark ignition energy measurements to future analyses of fuel tank flammability. Some key issues that need to be addressed in future testing are: (a) effect of flashpoint on the ignition energy-temperature relationship; (b) ignition energy vs. temperature as a function of altitude; (c) effect of fuel weathering on ignition energy; and (d) the effect of ignition source type on ignition limits.
机译:已经进行实验以测量空气中喷射A蒸气的火花点火能量。在这些测试中检查了从1 mJ到100 J的点火能量范围。通过首先在常温(295 K)和压力(1 atm)的空气中测量燃料己烷(C6H6)和丙烷(C3H8)的稀薄混合物的点火能量来验证测试方法的有效性。这些结果与现有数据相符,并为贫燃极限和化学计量混合物之间的成分提供了新的结果。在爆炸试验容器中,在两种燃料质量负荷(3和200 kg / m3)下,在30至60摄氏度的温度下测试了喷气A(从LAX,闪点45-48 [下降] C)与空气的蒸气混合物。容积为1.8升。在1180升的容器中,以3 kg / m3的质量负载在40、50和60℃下进行了测试。在初始压力​​为0.585 bar的条件下进行了Jet A的实验,以模拟适合TWA 800爆炸的高度条件。点火能量和峰值压力随初始温度而变化很大,但与质量负载无关。最小点火能量从60 [C]下的小于1 mJ到30 [C]下的超过100 J不等。在低于30 [C]的温度下,使用100 J甚至霓虹灯变压器都无法点火(连续放电)。 40至55℃之间的峰值压力约为4 bar。与1.8升容器相比,1180升容器中的峰值压力略低,点火能量更高。关于TWA 800坠毁,得出以下结论:(a)能量在5 mJ至1 J之间的火花点火源足以点燃Jet A蒸气,从而导致火焰蔓延; (b)峰值压力上升在1.5至4 bar(20至60 psi)之间。 (c)由热细丝构成的热点火源也足以点燃Jet A蒸气,从而产生火焰蔓延;该细丝是通过将电能释放到金属丝中而产生的; (d)层流燃烧速度在15至45厘米/秒之间; (e)CWT中可用的有限燃料量(约50加仑)并未显着提高可燃性极限。 ud ud火花点火能量随温度的升高而迅速降低,这表明,相对于火花点火源,热油箱比冷油箱危险更大。为了利用这些结果,并将火花点火能量的测量结果应用于未来燃料箱可燃性分析,现在需要系统地努力。在未来的测试中需要解决的一些关键问题是:(a)闪点对点火能量-温度关系的影响; (b)点火能量与温度的关系随高度的变化; (c)燃料风化对点火能量的影响; (d)点火源类型对点火极限的影响。

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