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Experimental Study on Shock Wave Propagation of the Explosion in a Pipe with Holes by High-Speed Schlieren Method

机译:高速Schlieren方法用孔爆炸冲击波传播的试验研究

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摘要

The shock wave propagation of the explosion in a pipe with holes was studied by a high-speed schlieren experimental system. In the experiments, schlieren images in the explosion were recorded by a high-speed camera from parallel and perpendicular orientations, respectively, and the pressure in the air was measured by an overpressure test system. In parallel orientation, it is observed that the steel pipe blocks the propagation of blast gases, but it allows the propagation of shock waves with a symmetrical shape. In perpendicular orientation, oblique shock wave fronts were observed, indicating the propagation of explosion detonation along the charge. Shock wave velocity in the hole direction is larger than that in the nonhole direction, indicating the function of holes in controlling blast energy, that is, leading blast energy to hole direction. Furthermore, the function of holes is verified by overpressure measurements in which peak overpressure in the hole direction is 0.87 KPa, 2.8 times larger than that in the nonhole direction. Finally, the variation of pressure around the explosion in a pipe with holes was analyzed by numerical simulation, qualitatively agreeing with high-speed schlieren experiments.
机译:通过高速Schlieren实验系统研究了带孔管中爆炸的冲击波传播。在实验中,爆炸中的Schlieren图像分别通过高速相机从平行和垂直取向记录,并且通过过压测试系统测量空气中的压力。在并联取向上,观察到钢管阻挡了喷气气的传播,但是它允许具有对称形状的冲击波传播。在垂直取向方面,观察到倾斜冲击波前沿,表明沿电荷爆炸爆炸的传播。孔方向上的冲击波速度大于非孔方向上的冲击波速度,表示控制喷砂能量中的孔的功能,即引领孔的孔方向。此外,通过过压测量验证孔的功能,其中孔方向上的峰值超压度为0.87kPa,比非孔方向大的2.8倍。最后,通过数值模拟分析了具有孔的管道中爆炸周围的压力的变化,定性同意高速Schlieren实验。

著录项

  • 作者

    Gang Zhang;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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