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Experimental Study on the Explosion of Gasoline-air Mixture in Reduced-scale Storage Tank

机译:小型储气罐内汽油-空气混合物爆炸的实验研究

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摘要

Fire and explosion accidents often occur in storage tanks leading to great economic loss and serious casualties during the working, operation and maintenance. This paper established a reduced-scale storage tank experimental system, and then the explosion characteristics of gasoline-air mixture in storage tank were studied. The experimental results show that several parameters (such as concentration of gasoline-air mixture, initial temperature of gasoline-air mixture, initial O2 and N2 contained in the storage tank) have very important influence on the gasoline-air mixture explosion and its explosion products. The upper and lower explosion limits of gasoline-air mixture are about 0.86% and 4.3% HC respectively according to the experimental results, and the critical explosion concentration is about 2.5% HC. The explosion of gasoline-air mixture under different initial temperatures in the concentration of 2.5% was carried out to find out that the biggest explosion overpressure is at the initial temperature of 308 K. The concentrations of explosion products namely CO and CO2 are closely related to the initial concentration of gasoline-air mixture, and the critical initial concentration of gasoline-air mixture to determine the higher and lower concentrations of CO and CO2 in explosion products is around 2.5% HC. Meanwhile, the ignition of gasoline-air mixture under various concentrations of premixed N2 and O2 in the storage tank was carried out, and the results show that the ignition of gasoline-air mixture with the concentration of 2.0% HC is impossible when the concentration of O2 is below 18.80%.
机译:储罐经常发生火灾和爆炸事故,导致巨大的经济损失,并在工作,操作和维护过程中造成重大人员伤亡。建立了小型储罐实验系统,然后研究了储罐中汽油-空气混合物的爆炸特性。实验结果表明,汽油-空气混合物的浓度,汽油-空气混合物的初始温度,储罐中所含的初始O2和N2等多个参数对汽油-空气混合物的爆炸及其爆炸产物具有非常重要的影响。 。根据实验结果,汽油-空气混合物的爆炸上限和爆炸下限分别约为HC的0.86%和4.3%,临界爆炸浓度约为HC的2.5%。进行了2.5%浓度的不同初始温度下的汽油-空气混合物的爆炸,发现最大爆炸超压是在308K的初始温度下。爆炸产物CO和CO2的浓度与汽油-空气混合物的初始浓度以及确定爆炸产品中较高和较低的CO和CO2浓度的临界浓度的汽油-空气混合物的HC约为2.5%。同时,对储罐中各种浓度的N2和O2预混合的汽油-空气混合物进行了点火,结果表明,当浓度为2.0%HC时,汽油-空气混合物不可能点火。 O2低于18.80%。

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