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Numerical simulation of the constructive steps of a cable-stayed bridge using ANSYS

机译:使用ANSYS的斜拉桥建设性步骤的数值模拟

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This work addresses a three-dimensional nonlinear structural analysis of the constructive phases of a cable-stayed segmental concrete bridge using The Finite Element Method through ANSYS, version 14.5. New subroutines have been added to ANSYS via its UPF customization tool to implement viscoelastoplastic constitutive equations with cracking capability to model concrete's structural behavior. This numerical implementation allowed the use of three-dimensional twenty-node quadratic elements (SOLID186) with the Element-Embedded Rebar model option (REINF264), conducting to a fast and efficient solution. These advantages are of fundamental importance when large structures, such as bridges, are modeled, since an increasing number of finite elements is demanded. After validating the subroutines, the bridge located in Rio de Janeiro, Brazil, and known as "Ponte do Saber" (Bridge of Knowledge, in Portuguese), has been numerically modeled, simulating each of the constructive phases of the bridge. Additionally, the data obtained numerically is compared with the field data collected from monitoring conducted during the construction of the bridge, showing good agreement.
机译:这项工作解决了通过ANSYS,14.5版使用有限元法使用有限元方法的缆绳停留的节段混凝土桥的建设性相的三维非线性结构分析。通过其UPF定制工具将新子程序添加到ANSYS,以实现具有裂解能力的粘屑构成方程,以模拟混凝土的结构行为。该数值实现允许使用具有元素嵌入式钢筋模型选项(Reinf264)的三维二十节点二次元素(Solid186),进行快速和有效的解决方案。当需要越来越多的有限元件,这些优点是基本重要性,因为需要越来越多的有限元。在验证子程序之后,位于拉西·杰尼罗,巴西的桥梁,并称为“Ponte Do Sabre”(葡萄牙语桥梁,在葡萄牙语中)已经进行了数值模拟,模拟了桥的每个建设性相位。另外,与在桥梁建造期间进行的监测中收集的现场数据进行比较了数量地获得的数据,显示出良好的一致性。

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