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SHM of a severely cracked masonry arch bridge in India: Experimental campaign and adaptive NURBS limit analysis numerical investigation

机译:印度一座严重破裂的砌体拱桥SHM:实验活动和自适应NURBS限制分析数值调查

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The paper presents some SHM results belonging to a wide experimental campaign conducted on a multi-arch masonry bridge located near Mumbai (India), exhibiting a large longitudinal crack on one of the arches and the corresponding advanced numerical evaluations carried out with a NURBS kinematic limit analysis approach, used to assess the stability of the arch subjected to the passage of heavy traffic loads. The masonry bridge is a three-arch structure built during the mid-19th century by British engineers to connect Bombay with the inland of the Indian subcontinent. At present, it is characterized by a heavy state of degradation especially in one of the arches that requires an immediate evaluation of the safety under the passage of traffic loads and possible ideas of interventions to strengthen the structure, in order to avoid the propagation of deep cracks along the longitudinal direction. The adopted SHM includes the crack growth monitoring and tilting of the spandrels under the application of two different heavy loads (a water tank truck and a hydra crane) located in different positions of the arch. Numerical modelling is carried out with a full 3D approach with NURBS finite elements in limit analysis that takes into account the pre-existing crack opening and predicts with great accuracy the ultimate loads in different scenarios and the corresponding active failure mechanisms. From experimental monitoring and numerical simulations results, it is concluded that the bridge is still safe under the passage of traffic loads, but approaches the ultimate limit state for some specific configurations of the loads applied. A refurbishment is therefore needed to avoid any further propagation of the cracks up to collapse. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了一些SHM结果,属于位于孟买(印度)附近的多拱形砌体桥上进行的广泛实验活动,在其中一个拱门上展出了大的纵向裂缝,并通过NURBS运动限制进行了相应的高级数值评估分析方法,用于评估拱门的稳定性经过繁重的交通负荷。砌体桥是英国工程师在19世纪中期建造的三拱形结构,将孟买与印度次大陆的内陆联系起来。目前,它的特征在于较重的劣化状态,特别是在一个拱门中,需要立即评估交通负荷通过的安全性和加强结构的可能思想,以避免深度的传播沿纵向裂缝。采用的SHM包括在拱门不同位置的两种不同的重载(水箱卡车和湿度起重机)的应用下的裂缝生长监测和倾斜弯曲。数值建模以完整的3D方法,NURBS有限元在限制分析中,考虑到预先存在的裂缝打开并以极大的准确性预测不同场景中的最终负载和相应的主动故障机制。从实验监测和数值模拟结果中,得出结论是,在交通负荷的通过下,桥仍然是安全的,但是接近所应用的负载的一些特定配置的最终限制状态。因此需要翻新以避免裂缝进一步繁殖到崩溃。 (c)2021 elestvier有限公司保留所有权利。

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