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首页> 外文期刊>Journal of loss prevention in the process industries >Small-scale physical explosions in shock tubes in comparison with condensed high explosive detonations
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Small-scale physical explosions in shock tubes in comparison with condensed high explosive detonations

机译:震荡管中的小规模物理爆炸与浓缩高爆炸爆轰的比较

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摘要

A series of small-scale experiments involving physical explosions in a 1.6 1 pressure vessel was carried out. Explosions were initiated by spontaneous rupture of an aluminium membrane on one side of the vessel at a pressure in the range 1-1.2 MPa. The pressure waves released were measured at different distances along two separate shock tubes, one 10 m long and 200 mm in diameter (closed at one end by the high pressure vessel) and the other 15 m long and 100 mm in diameter. TNT equivalency was used for predicting the blast wave characteristics after vessel rupture. TNT equivalency was used because equations for prediction of peak pressure and impulse of the blast wave in 1-D geometry after detonations of condensed explosives are known. Some experiments with an equivalent amount of real explosive were carried out for comparison with the theoretical and experimental data obtained. The applicability of the TNT equivalency method presented for calculations of maximum pressure and shock wave impulse generated after rupture of the pressure vessel in 1-D geometry is discussed.
机译:进行了一系列涉及在1.6 1压力容器中进行物理爆炸的小规模实验。爆炸是通过在压力范围为1-1.2 MPa的容器一侧的铝膜自发破裂而引发的。沿着两个分开的冲击管,以不同的距离测量释放的压力波,两个冲击管一个长10 m,直径200 mm(一端被高压容器封闭),另一个长15 m,直径100 mm。 TNT当量用于预测血管破裂后的爆炸波特征。之所以使用TNT等效性,是因为已知在凝聚炸药爆炸后用于预测一维几何形状中爆炸压力的峰值压力和冲击波的方程式。进行了一些等量的真实炸药实验,以与获得的理论和实验数据进行比较。讨论了提出的TNT等效方法在计算一维几何形状的压力容器破裂后产生的最大压力和冲击波脉冲时的适用性。

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