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Effects of concentration, temperature, ignition energy and relative humidity on the overpressure transients of fuel-air explosion in a medium-scale fuel tank

机译:浓度,温度,点火能量和相对湿度对中型燃油箱中燃油-空气爆炸超压瞬变的影响

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摘要

Experiments were conducted in a 907.5-L fuel tank to investigate the effects of concentration, temperature, ignition energy, and humidity on the explosion overpressure transients of gasoline-air mixture explosions. The results show that the overpressure-time profiles can be roughly divided into four stages: incubation stage, slow acceleration stage, abrupt acceleration stage, descending stage. During the explosion process, intense overpressure oscillation occurred in the fuel tank. Specifically, both the maximum overpressure (p(max)) and the maximum rate of overpressure rise ((dp/dt)(max)) increased firstly and then decreased as the gasoline concentration increased, and the correction between overpressure parameters and gasoline concentration is approximately cubic polynomial. The peak values of p(max) and (dp/dt)(max) were obtained at the concentration of 1.71%. The influence of temperature on p(max) and (dp/dt)(max) was relatively complex, which may result from the vessel volume and the initial gas concentration. Moreover, with the increase of ignition energy, p(max) and (dp/ dt)(max) according to a linear increase trend and a logarithmical increase trend, respectively. With the increase of initial humidity, both p(max )and (dp/dt)(max) showed a linear decrease trend. These results are useful for understanding the explosion characteristics of fuel-air mixtures under various initial conditions in medium-scale fuel tanks.
机译:在907.5-L的燃油箱中进行了实验,以研究浓度,温度,点火能量和湿度对汽油-空气混合物爆炸的爆炸超压瞬变的影响。结果表明,超压-时间曲线可以大致分为四个阶段:潜伏阶段,缓慢加速阶段,突然加速阶段,下降阶段。在爆炸过程中,燃油箱中发生了强烈的超压振荡。具体而言,最大超压(p(max))和最大超压上升率((dp / dt)(max))随汽油浓度的增加先增大然后减小,并且超压参数和汽油浓度之间的校正为近似三次多项式。在1.71%的浓度下获得p(max)和(dp / dt)(max)的峰值。温度对p(max)和(dp / dt)(max)的影响相对复杂,这可能是由于容器体积和初始气体浓度引起的。而且,随着点火能量的增加,p(max)和(dp / dt)(max)分别根据线性增加趋势和对数增加趋势而变化。随着初始湿度的增加,p(max)和(dp / dt)(max)均呈线性下降趋势。这些结果对于理解中型燃油箱在各种初始条件下燃油-空气混合物的爆炸特性很有用。

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