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Load-carrying capacity evaluation of girder bridge using moving vehicle

机译:使用移动车辆的梁桥承载能力评估

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Efficient and reliable load-carrying capacity evaluation of deficient bridges is essential for bridge maintenance and management. Based on load-carrying capacity evaluation of an existing bridge, operator can formulate strategies and implement countermeasures such as repair, strengthening or traffic regulation. Currently, static load test is used widely for evaluation of bridge load-carrying capacity. The test, however, is often considered expensive and requires massive traffic closure that hinders frequent implementation on highway or bridges in the rural area. In this paper, an efficient method for load-carrying capacity evaluation of girder bridges based on displacement under moving vehicle is proposed. The method consists of three main procedures, namely, radar-based dynamic displacement measurement under truck pass-by test, influence line extraction, and estimation of the displacement under the static load test scenario. Based on these procedures, evaluation of load-carrying capacity is conducted following the AASHTO manual. The method was verified in numerical simulations using three-dimensional finite element model of typical girder bridge under vehicle loading. Effects of vehicle weight, vehicle speed, and road roughness on the accuracy of displacement estimation were investigated in the numerical simulations. Full-scale implementation of the method was conducted on a simply supported prestressed concrete girder bridge to investigate feasibility of the proposed method and to provide guidance for practical application. The results reveal that load rating factor of the girders can be reliably evaluated. The evaluation process was also more effective and economical than the conventional method.
机译:缺乏桥梁的高效可靠的负载能力评估对于桥梁维护和管理至关重要。基于现有桥梁的承载能力评估,操作员可以制定策略和实施对策,如修理,加强或交通规程。目前,静态负载测试广泛用于评估桥接承载能力。然而,测试通常被认为是昂贵的并且需要大规模的交通关闭,阻碍农村地区的公路或桥梁频繁实施。本文提出了一种基于移动车辆下位移的梁桥的承载能力评估的有效方法。该方法由三个主要程序组成,即卡车通过试验,影响线提取的基于雷达的动态位移测量,并在静态负荷测试场景下的位移估计。基于这些程序,在AASHTO手册下进行了对承载能力的评估。车辆载荷下典型梁桥三维有限元模型在数值模拟中验证了该方法。在数值模拟中研究了车辆重量,车速和道路粗糙度对位移估计精度的影响。在简单的预应力混凝土梁桥上进行了全面的方法,以研究所提出的方法的可行性,并为实际应用提供指导。结果表明,可以可靠地评估梁的负荷额定值因子。评估过程也比传统方法更有效和经济。

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