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STRUCTURAL HEALTH MONITORING OF A CURVED GIRDER BRIDGE SUBJECTED TO DIFFERENT BOUNDARY CONDITIONS

机译:不同边界条件曲线梁桥的结构健康监测

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A curved, three-span continuous, steel I-girder bridge in Salt Lake City, Utah was tested in order to determine its dynamic and static response to forced vibration. The bridge supports were altered and its response was monitored for three different boundary condition states. For each of the three boundary condition states, two dynamic forced vibration methods were applied to the bridge in order to determine the feasibility of structural health monitoring. The first forced vibration method used an eccentric mass shaker capable of imparting a horizontal sinusoidal force of up to 89 kN (20,000 lbs). The second method involved horizontally striking the side of the bridge with a 2.47 kN (556 lb) impact hammer. An array of 1-Hz velocity transducers and 1-g accelerometers were utilized to record response of the bridge. The recorded dynamic response of the bridge was analyzed and resulted in mode shapes and natural frequencies for each boundary condition state for both the sinusoidal and impact testing. This paper discusses the resulting changes in relevant dynamic.
机译:犹他州盐湖城的弯曲,三跨连续,钢铁I-Girder桥,以确定其动态和静态响应强制振动。桥接支持被改变,并监测其三种不同边界条件状态的响应。对于三个边界条件状态中的每一个,将两个动态强制振动方法施加到桥上,以确定结构健康监测的可行性。第一强制振动方法使用能够赋予高达89kN(20,000磅)的水平正弦力的偏心质量振动器。用2.47kN(556磅)冲击锤水平撞击桥梁侧的第二种方法。 1 Hz速度传感器和1g加速度计的阵列用于记录桥的响应。分析桥的记录的动态响应,并导致正弦和冲击测试的每个边界条件状态的模式形状和自然频率。本文讨论了相关动态的导致变化。

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