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Masonry infill walls under blast loading using confined underwater blast wave generators (WBWG)

机译:使用受限水下爆炸波发生器(WBWG)在爆炸荷载下的砖石填充墙

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摘要

The vulnerability of the masonry envelop under blast loading is considered critical due to the risk of loss of lives. The dynamic behaviour of masonry infill walls subjected to dynamic out-of-plane loading was experimentally investigated in this work. Using confined underwater blast wave generators (WBWG), applying the extremely high rate conversion of the explosive detonation energy into the kinetic energy of a thick water confinement, allowed a surface area distribution avoiding also the generation of high velocity fragments and reducing atmospheric sound wave. In the present study water plastic containers, having in its centre a detonator inside a cylindrical explosive charge, were used. Studies were performed in both unreinforced and reinforced walls with 1.7 by 3.5 meters. Bed joint reinforcement and grid reinforcement were used to strengthen the infill walls. Besides the usage of pressure and displacement transducers, pictures with high-speed video cameras were recorded to enable processing of the deflections and identification of failure modes. Two different strengthening solutions were studied under blast loading and the results are presented and compared.
机译:由于生命损失的风险,在爆炸荷载下砌体信封的脆弱性被认为是至关重要的。在这项工作中,通过实验研究了砌体填充墙在动态平面外荷载作用下的动态行为。使用受限的水下爆炸波发生器(WBWG),将爆炸物的爆炸能量以极高的速率转换为厚水限制层的动能,从而实现了表面积分布,还避免了高速碎片的产生并减少了大气声波。在本研究中,使用了水塑料容器,其中心有一个圆柱形炸药内部的雷管。研究在1.7 x 3.5米的非加强墙和加强墙中进行。床缝加固和格栅加固用于加固填充墙。除了使用压力和位移传感器之外,还记录了带有高速摄像机的图像,以处理偏转和识别故障模式。研究了爆炸荷载作用下的两种不同的加固方案,并给出了结果并进行了比较。

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