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A method for the on-site determination of prestressing forces using long-gauge fiber optic strain sensors

机译:一种使用长规格光纤应变传感器现场确定预应力的方法

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Structural health monitoring (SHM) consists of the continuous or periodic measurement of structural parameters and their analysis with the aim of deducing information about the performance and health condition of a structure. The significant increase in the construction of prestressed concrete bridges motivated this research on an SHM method for the on-site determination of the distribution of prestressing forces along prestressed concrete beam structures. The estimation of the distribution of forces is important as it can give information regarding the overall performance and structural integrity of the bridge. An inadequate transfer of the designed prestressing forces to the concrete cross-section can lead to a reduced capacity of the bridge and consequently malfunction or failure at lower loads than predicted by design. This paper researches a universal method for the determination of the distribution of prestressing forces along concrete beam structures at the time of transfer of the prestressing force (e.g., at the time of prestressing or post-tensioning). The method is based on the use of long-gauge fiber optic sensors, and the sensor network is similar (practically identical) to the one used for damage identification. The method encompasses the determination of prestressing forces at both healthy and cracked cross-sections, and for the latter it can yield information about the condition of the cracks. The method is validated on-site by comparison to design forces through the application to two structures: (1) a deck-stiffened arch and (2) a curved continuous girder. The uncertainty in the determination of prestressing forces was calculated and the comparison with the design forces has shown very good agreement in most of the structures' cross-sections, but also helped identify some unusual behaviors. The method and its validation are presented in this paper.
机译:结构健康监测(SHM)包括连续或定期测量结构参数及其分析,目的在于推导有关结构性能和健康状况的信息。预应力混凝土桥梁建设的显着增加推动了对SHM方法的研究,该方法用于现场确定沿预应力混凝土梁结构的预应力分布。力分布的估计很重要,因为它可以提供有关桥梁整体性能和结构完整性的信息。设计的预应力到混凝土横截面的不充分传递会导致桥梁的承载能力下降,从而导致在低于设计预期的荷载下发生故障或失效。本文研究了一种确定传递预应力时(例如预应力或后张应力时)混凝土梁结构中预应力分布的通用方法。该方法基于使用长距离光纤传感器,并且传感器网络类似于(实际上是相同的)用于损伤识别的网络。该方法包括确定在健康横截面和破裂横截面上的预应力,对于后者,它可以产生有关裂缝状况的信息。通过与应用于两个结构的设计力进行比较,现场验证了该方法:(1)甲板加劲肋的拱形结构和(2)弯曲的连续梁。计算了确定预应力的不确定性,并且与设计力的比较在大多数结构横截面中显示出很好的一致性,但也有助于识别一些异常行为。本文介绍了该方法及其验证。

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