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A study on the obstacle-induced variation of the gas explosion characteristics

机译:障碍物引起的瓦斯爆炸特性变化研究

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A study on the variation of the gas explosion characteristics caused by the built-in obstacles was conducted in enclosed/vented gas explosion vessels. It has been well known that the obstacles in pipes and long ducts would accelerate the flame propagation, and cause the transition from deflagration to detonation. In this study, the explosion characteristics and the flame behavior of vented explosions and constant-volume explosions were investigated. Experiments were carried out in a 270-liter and 36-liter hexahedron vessels filled with LPG-air mixture. The explosion characteristics of the gas mixture were determined by using a strain-responding pressure transducer. The flame behavior was recorded by using a high-speed video camera. The shape and the size of the obstacle, and the gas concentration, were adjusted in the experiments. It can be seen from the experimental results that, instead of being accelerated, the flame propagation inside the explosion vessel is decelerated by the plate obstacles fixed at the bottom of the vessel. Also, the characteristics of the enclosed explosion are not so affected by the built-in obstacles as those of the vented explosion are. It is believed that the eddy-induced turbulence behind the obstacle decelerates the flame propagation.
机译:在封闭/通风的气体爆炸容器中,研究了由内置障碍物引起的气体爆炸特性的变化。众所周知,管道和长管道中的障碍物会加速火焰传播,并导致从爆燃到爆炸的过渡。在这项研究中,研究了爆炸特性以及排气爆炸和定容爆炸的火焰行为。实验是在装有LPG-空气混合物的270升和36升六面体容器中进行的。通过使用应变响应压力传感器确定混合气的爆炸特性。使用高速摄像机记录火焰行为。在实验中调整了障碍物的形状和大小以及气体浓度。从实验结果可以看出,爆炸容器内部的火焰传播不是加速而是通过固定在爆炸容器底部的板状障碍物而减速。而且,封闭式爆炸的特性不受内置障碍物的影响,而不受泄放爆炸的影响。据信,障碍物后面的涡流引起的湍流使火焰传播减速。

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