Modeling and analysis of a prestressed girder bridge prior to diagnostic load testing

IF 0.1
Emilia Andrade Borges, E. Lantsoght, Sebastián Castellanos-Toro, Johannio Marulanda Casas
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引用次数: 1

Abstract

Progressive deterioration is a problem that affects road infrastructure, especially bridges. This requires the development of methods for its adequate detection and revision, one of them being load testing. Within load testing, finite element analysis (FEA) models provide initial information to understand the behavior of a structure and plan accordingly, which represents a fundamental step towards a precise structural evaluation of a bridge. This study focused on the modeling and analysis of the static response of the bridge over the river Lili in Cali, Colombia, a prestressed girder bridge programmed to undergo a diagnostic load test. A linear FEA model was created with information from a manual survey and from other bridges’ plans designed and built under the regulations in force at the time. Due to the absence of plans and design specifications for the bridge, variations were applied to certain model parameters (stiffness of diaphragms and elastomeric bearings), to quantify their effect on the overall behavior of the bridge. The analysis included obtaining the critical position for the design vehicles, the transversal distribution of stresses and determining the influence of the variation parameters in the response of the structure. Results showed that the critical combinations for bending moment and shear were when the loads were the closest to the exterior girders, being these elements the most affected. The variation on the modulus of elasticity for the diaphragms and the stiffness of the elastomeric bearings did not significantly influence the results for bending moment and shear, nor the critical position. Girder distribution factors (GDF) from the model were compared to previous research, finding similarities in shape and value with other FEA models and experimental results. Finally, an instrumentation plan focused on the girders of the bridge was proposed based on the zones where the maximum effects are expected. The findings in this study show how linear FEA models provide initial but relevant information regarding the critical position of design vehicles, the distribution of stresses and the expected values for bending moment and shear under design loads.
诊断荷载试验前预应力梁桥的建模与分析
逐渐恶化是影响道路基础设施,特别是桥梁的问题。这就需要开发出适当的检测和修正方法,其中之一就是负载测试。在荷载测试中,有限元分析(FEA)模型提供了了解结构行为和相应规划的初始信息,这是对桥梁进行精确结构评估的基本步骤。本研究的重点是对哥伦比亚卡利Lili河大桥的静响应进行建模和分析,这是一座预应力梁桥,经过诊断荷载试验。线性有限元模型是根据手工调查和其他根据当时有效法规设计和建造的桥梁计划的信息创建的。由于缺乏桥梁的规划和设计规范,对某些模型参数(隔膜和弹性轴承的刚度)进行了变化,以量化它们对桥梁整体性能的影响。分析工作包括获得设计车辆的临界位置、应力的横向分布以及确定变异参数对结构响应的影响。结果表明:弯矩和剪力的临界组合出现在荷载最接近外梁时,受影响最大;膜片弹性模量和弹性轴承刚度的变化对弯矩和剪切的结果没有显著影响,对临界位置也没有显著影响。将模型所得的梁分布因子(GDF)与其他有限元模型和试验结果进行了比较,发现其形状和数值具有相似性。最后,根据预期影响最大的区域,提出了针对桥梁主梁的检测方案。本研究的结果表明,线性有限元模型如何提供有关设计车辆的关键位置、应力分布以及设计荷载下弯矩和剪切的期望值的初始但相关的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Avances en Ciencias e Ingenieria
Avances en Ciencias e Ingenieria ENGINEERING, MULTIDISCIPLINARY-
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16
审稿时长
14 weeks
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