Key Lab of Structures Dynamic Behaviour and Control of the Ministry of Education, Harbin Institute of Technology, Harbin, 150090, China.
Key Lab of Smart Prevention and Mitigation of Civil Engineering Disasters of the Ministry of Industry and Information Technology, Harbin Institute of Technology, Harbin, 150090, China.
Sci Rep. 2023 Apr 25;13(1):6719. doi: 10.1038/s41598-023-30785-8.
Cylindrical shells are widely used in public buildings and military protection fields, and it has a high risk of terrorist attacks and military attacks, it is of great social benefit to carry out the anti-blast design of cylindrical shells, which needs to consider building shape and the shape of blast waves. In this paper, cylindrical charges in five directions were detonated on the outer ground of the scaled cylindrical shell, blast loads of the cylindrical shell were measured and blast waves were photographed. The variation of blast load is analyzed by combining the test and simulation results, the difference in peak overpressure of the blast waves on the end face between five orientations is nearly twice. The blast loads in the axial direction of cylindrical charges have a secondary peak phenomenon, and the blast loads between the axial direction and radial direction of cylindrical charges change abruptly at a specific angle. The experimental and simulation methods provide a reference for establishing a blast load database of typical buildings.
圆柱壳在公共建筑和军事防护领域得到了广泛的应用,其存在着较高的恐怖袭击和军事打击风险,因此对圆柱壳进行防爆设计具有重大的社会效益,这需要考虑建筑形状和爆炸波的形状。本文在缩比圆柱壳的外地面上对五个方向的圆柱装药进行了爆炸,测量了圆柱壳的爆炸载荷并拍摄了爆炸波。通过结合试验和模拟结果分析了爆炸载荷的变化,五个方向上的端面超压峰值差异接近两倍。圆柱装药轴向的爆炸载荷存在二次峰值现象,而圆柱装药轴向和径向之间的爆炸载荷在特定角度急剧变化。实验和模拟方法为建立典型建筑物的爆炸载荷数据库提供了参考。