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首页> 外文期刊>Journal of intelligent material systems and structures >Measure point arrangement strategy for in-service continuous girder bridge SHM with consideration of structural robustness (Special Issue of ICAST 2019)
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Measure point arrangement strategy for in-service continuous girder bridge SHM with consideration of structural robustness (Special Issue of ICAST 2019)

机译:考虑到结构鲁棒性衡量持续梁桥SHM的点安排策略(ICAST专题ICAST 2019)

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摘要

In-service bridges, under long-term service operational environment, are usually accompanied by different damage types. Traditional method for the measure point arrangement of in-service bridge SHM is usually based on engineering experience. A large number of SHM sensors are usually arranged on the structure, followed by a high engineering cost and a heavy maintenance task. These sensors will also produce large amounts of data, creating a challenge for operators requiring to deal with data processing in an effective manner. This study serves as a part of the series of studies on the measure point arrangement strategy of in-service bridge SHM. In this study, the SHM sensor measure point arrangement of in-service continuous girder bridge (a common structural style of high way bridge in China) is proposed. Two-span continuous beam, three-span continuous beam, and four-span continuous beam are taken as examples. Detailed comparison and verification are also performed with consideration of numerical simulation and previous studies. Different traffic speeds and different bridge spans are considered. The effect of different damage locations and different damage degrees are analyzed in detail. This study shows that a general similar trend can be observed for the structural robustness of in-service continuous girder bridge. The elements with smaller structural robustness of this kind of bridge are basically located around the middle cross section of side spans (first span and last span), followed by the middle span. Moreover, the numerical value of structural robustness of different elements in a continuous girder bridge is significantly different from each other, due to the complexity of the joint effect of different traffic speeds and damage locations. Therefore, the measure point should be generally arranged at the side span firstly, followed by the middle span. With consideration of the specific traffic speed and damage location in engineering application, a detailed analysis is also proposed for the further optimization of SHM sensor measure point arrangement. Once the elements are arranged in order of the numerical value of structural robustness, the SHM sensor measure point arrangement of this kind of bridge can be more targeted, and the number of sensors can also be greatly reduced.
机译:在长期服务运营环境下的服务桥梁通常伴随着不同的损坏类型。用于役桥SHM的测量点布置的传统方法通常基于工程经验。大量SHM传感器通常布置在结构上,然后是高工程成本和重型维护任务。这些传感器还将产生大量数据,为需要以有效方式处理数据处理的操作员创造挑战。本研究担任桥梁SHM的测量点布置策略的一系列研究。在这项研究中,提出了SHM传感器测量点布置的持续梁桥(中国高速公路桥梁的共同结构风格)。两跨连续梁,三跨连续光束和四跨连续光束作为示例。还考虑了数值模拟和以前的研究进行了详细的比较和验证。考虑不同的交通速度和不同的桥跨度。详细分析了不同损伤位置和不同损伤程度的影响。该研究表明,可以观察到普通类似的趋势对于在役不连续梁桥的结构稳健性方面可以观察到。这种桥梁结构稳健性较小的元素基本上位于侧跨度的中间横截面(第一个跨度和最后一个跨度)周围,然后是中间跨度。此外,由于不同交通速度和损坏位置的关节效应的复杂性,连续梁桥中不同元件的结构鲁棒性的数值彼此显着不同。因此,测量点通常首先在侧跨度处布置,然后是中间跨度。考虑到工程应用中的特定流量速度和损坏位置,还提出了详细的分析,用于进一步优化SHM传感器测量点布置。一旦元素按照结构稳健性的数值顺序排列,这种桥的SHM传感器测量点布置可以更具目标,并且也可以大大降低传感器的数量。

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