Department of Civil Engineering, Ningbo University, Ningbo, 315211, China.
Ningbo Railway and West Hub Construction Center, Ningbo, 315042, China.
Sci Rep. 2023 Jun 14;13(1):9614. doi: 10.1038/s41598-023-36737-6.
The surrounding surcharge has an adverse impact on the service performance of buildings and bridges, and it can endanger their structural safety, especially in soft soil areas. As one case study, the inclination accident of an expressway ramp bridge and its rectification are investigated in this study. Through the three-dimensional (3D) finite element (FE) analysis of the overall structures composed of the bridge span, the pier, and the pile foundation, the whole process of the inclination by the adjacent dumped earth, partial recovery by the unloading, and the lateral pushing rectification of the bridge structure were simulated. The results show that the surcharge load leads to soil displacement near the bridge pile, and the pile-soil interaction leads to the pile deformation, which further causes the inclination of the pier, and the movement of the bridge span. The severity of the accident can be measured by the inclination of the piers and the opening widths of the bridge expansion joints. Due to the plastic deformation and drainage consolidation of the soft clay foundation under the surcharge load, the inclination of the piles and piers cannot be fully recovered after unloading. In order to capture these processes, the FE simulation was divided into three steps. First, the drainage consolidation of the soil foundation were identified by FE simulation and the field measurement of the recovery of the structure after unloading. Second, the effects of soil properties, the surcharge time and surcharge strength on the bridge inclination and the recovery capacity after unloading are discussed. Finally, the rectification of the bridge by lateral pushing was simulated, and the deformation and stress in the pier and pile were calculated to evaluate the safety of the structures. These analyses provided understanding towards the prevention of the bridge inclination under surcharge load, prediction of the recovery by the unloading, and the methods to reduce the residual deformation to meet the specifications.
周围超载对建筑物和桥梁的使用性能有不利影响,甚至会危及结构安全,尤其是在软土地区。作为案例研究,本文对某高速公路匝道桥倾斜事故及其纠偏进行了研究。通过对桥跨、桥墩和桩基础组成的整体结构进行三维有限元分析,模拟了临近填土侧倾、卸载部分回倾以及桥梁结构侧向推正的全过程。结果表明,超载导致了桥桩附近的土体位移,桩土相互作用导致了桩的变形,从而进一步导致了桥墩的倾斜以及桥跨的移动。桥墩的倾斜和桥梁伸缩缝的开口宽度可以衡量事故的严重程度。由于超载作用下软黏土基础的塑性变形和排水固结,卸载后桥墩和桩的倾斜不能完全恢复。为了捕捉这些过程,有限元模拟分为三个步骤。首先,通过有限元模拟和卸载后结构恢复的现场测量,确定了地基的排水固结情况。其次,讨论了土性、超载时间和超载强度对桥梁倾斜和卸载后恢复能力的影响。最后,模拟了桥梁的侧向推正,并计算了桥墩和桩的变形和应力,以评估结构的安全性。这些分析为防止超载作用下桥梁倾斜、预测卸载后的恢复以及减小残余变形以满足规范要求提供了参考。