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Explosion Flame Acceleration over Obstacles: Effects of Separation Distance for a Range of Scales

机译:障碍物上的爆炸火焰加速:一系列尺度的分离距离的影响

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摘要

The influence of obstacle separation distance on explosion flame acceleration was studied for 10% methane-air mixtures using two 20% blockage obstacles with variable number and width of bars (variable obstacle length scale) were investigated in a 162 mm diameter 4.5 m long tube with ignition on the centre of the closed end and flame propagation towards the open end. The spacing between the obstacles was varied from 0.25 m to 2.75 m. It was observed that the maximum overpressure and flame speed increased with the reduction in number of flat-bars (i.e. with increasing obstacle length scale). A maximum overpressure of 129 kPa at 2.25 m obstacle spacing was achieved with 1-flat-bar obstacles, followed by 118 kPa and 110 kPa for 2 and 4-flat-bars respectively at 1.25 m and 0.5 m obstacle separation. Turbulent to laminar burning velocity ratios downstream of the second obstacle at the optimum spacing for maximum interaction were in the range of 62-122. These are the magnitudes of flame acceleration required to explain overpressures in vapour cloud explosions in the presence of obstacles. It is worth appreciating that two obstacles of lower blockages but spaced optimally could generate higher explosion severity in terms of overpressure, flame speed and turbulence level similar to real gas explosion incidents.
机译:在162mm直径4.5m长的管道中,研究了两个可变的棒数和宽度(可变的障碍物长度标尺)的两个20%的障碍物,研究了障碍物分离距离对10%甲烷空气混合物爆炸火焰加速的影响。在封闭端的中心点火,火焰向开放端传播。障碍物之间的间距从0.25 m到2.75 m不等。观察到,最大的超压和火焰速度随着扁棒数量的减少而增加(即,随着障碍物长度比例的增加)。使用1-扁杆障碍物时,在2.25 m障碍物间距处实现了129 kPa的最大超压,然后在1.25 m和0.5 m障碍物间距下,对于2和4-扁杆分别达到118 kPa和110 kPa。第二障碍物下游的湍流与层流燃烧速度比值以最大相互作用的最佳间隔在62-122范围内。这些是解释存在障碍物时蒸气云爆炸中超压所需的火焰加速度大小。值得赞赏的是,两个堵塞程度较低但间距最佳的障碍物,在过压,火焰速度和湍流水平方面,类似于真实的气体爆炸事件,可能会产生更高的爆炸严重性。

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