Zhu Hui, Yan Songhong, Sun Weiyu, Zhang Rongling, Ou Erfeng, Liang Qingguo
School of Civil Engineering, Lanzhou Jiaotong University, Lanzhou, 730070, China.
Key Laboratory of Road & Bridge and Underground Engineering of Gansu Province, Lanzhou, 730070, China.
Sci Rep. 2024 Apr 21;14(1):9139. doi: 10.1038/s41598-024-59593-4.
This paper aims to investigate the dynamic response characteristics of subway station under earthquakes. To this end, seismic waves are transformed into equivalent nodal loads on viscoelastic artificial boundaries using theories and methods of wave motion. The calculation formulas for equivalent nodal loads of SV waves incident at any angle are established, and ANSYS' APDL program compiles to automatically generate the viscoelastic artificial boundary and input the seismic loads. A finite element model of soil-subway station interaction was established, and the seismic response characteristics of a two-story three-span subway station under different incidence angles of SV waves were investigated using the above seismic input method. The results indicate that the incidence angle of seismic waves has a significant impact on the seismic response of subway station. Inclined incidence of seismic waves causes non-uniform loading and deformation of the subway station. Specifically, a small angle leads to predominantly transverse shear deformation, while a large angle causes mainly vertical shear deformation. The inclined incidence of seismic waves significantly increases the vertical acceleration of the subway station, with the effect becoming more pronounced as the angle increases. Additionally, special attention should be given to the joints between the structural slab and the side wall, slab and center column, as well as the two ends of the center column as they are vulnerable areas during earthquakes and require careful consideration in seismic design.
本文旨在研究地震作用下地铁站的动力响应特性。为此,利用波动理论和方法将地震波转换为粘弹性人工边界上的等效节点荷载。建立了任意角度入射的SV波等效节点荷载计算公式,并通过ANSYS的APDL程序进行编译,自动生成粘弹性人工边界并输入地震荷载。建立了土-地铁站相互作用的有限元模型,采用上述地震输入方法研究了两层三跨地铁站在不同SV波入射角作用下的地震响应特性。结果表明,地震波入射角对地铁站的地震响应有显著影响。地震波斜入射会导致地铁站荷载和变形不均匀。具体而言,小角度入射主要导致横向剪切变形,而大角度入射主要引起竖向剪切变形。地震波斜入射显著增加了地铁站的竖向加速度,且随着角度增大,这种影响更加明显。此外,应特别关注结构板与侧壁、板与中柱之间的节点以及中柱两端,因为它们是地震中的薄弱区域,在抗震设计中需要仔细考虑。