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Static load testing with temperature compensation for structural health monitoring of bridges

机译:带温度补偿的静载试验,用于桥梁结构健康监测

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摘要

The paper presents a series of repeated static loading tests on a prestressed concrete beam, which was originally part of a real bridge and then subjected to stepwise artificial damage. The tests were done during a one-month period that four levels of damage were introduced by cutting tendons until visible cracking occurred. The deflection line was measured by means of several displacement sensors and theretrieved information is used in different ways for damage detection.At first, the sensor spacing requirement is analyzed with respect to measurement accuracy as well as necessary resolution for the numerical derivations of the deflection line to obtain the rotational angle and the curvature of the beam. These derived quantities may be used as damage indicators in addition to the deflection.Damage of concrete goes very often along with non-linear phenomena like cracking of concrete andplastic strain of reinforcement steel. These effects are discussed and their influence on the repeated loadingtests as well the test procedure for condition monitoring is deployed. Progressive damage goes along with progressive sagging of the bridge due to gravity, which can also be used as damage indicator.Finally, the effect of varying outdoor temperatures are discussed and assessed. Though these effects canbe reduced by choosing cloudy days without high temperature changes and without high solar irradiation, the outdoor temperature is never constant. Hence, a compensation algorithm is proposed which reflects the measured data according to a reference temperature. This compensation visibly improved the regularity of data.
机译:本文介绍了对预应力混凝土梁进行的一系列重复静载荷测试,该梁最初是真实桥梁的一部分,然后遭受了逐步的人为破坏。在为期一个月的测试中,通过切断肌腱直至出现明显的裂缝,引入了四个级别的损伤。偏转线是通过几个位移传感器进行测量的,并以不同的方式将获取的信息用于损伤检测。首先,分析传感器间距的要求,涉及测量精度以及偏转线数值推导的必要分辨率以获得光束的旋转角度和曲率。这些导出的量除了可以用作挠度之外,还可以用作损伤指标。混凝土的损坏经常伴随着非线性现象,例如混凝土的开裂和钢筋的塑性应变。讨论了这些影响,并讨论了它们对重复负载测试的影响以及状态监控的测试过程。渐进式破坏伴随着桥梁由于重力而逐渐下垂,这也可以用作破坏指标。最后,讨论并评估了室外温度变化的影响。尽管可以通过选择阴天而不进行高温变化和不进行高日照辐射来减少这些影响,但是室外温度永远不会恒定。因此,提出了一种补偿算法,该补偿算法根据参考温度反映测量数据。这种补偿明显改善了数据的规律性。

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