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Monitoring of prestress losses using long-gauge fiber optic sensors

机译:使用长距离光纤传感器监控预应力损失

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Prestressed concrete has been increasingly used in the construction of bridges due to its superiority as a building material. This has necessitated better assessment of its on-site performance. One of the most important indicators of structural integrity and performance of prestressed concrete structures is the spatial distribution of prestress forces over time, i.e. prestress losses along the structure. Time-dependent prestress losses occur due to dimensional changes in the concrete caused by creep and shrinkage, in addition to strand relaxation. Maintaining certain force levels in the strands, and thus the concrete cross-sections, is essential to ensuring stresses in the concrete do not exceed design stresses, which could cause malfunction or failure of the structure. This paper presents a novel method for monitoring prestress losses based on long-gauge fiber optic sensors embedded in the concrete during construction. The method includes the treatment of varying environmental factors such as temperature to ensure accuracy of results in on-site applications. The method is presented as applied to a segment of a post-tensioned pedestrian bridge on the Princeton University campus, Streicker Bridge. The segment is a three-span continuous girder supported on steel columns, with sensors embedded at key locations along the structure during construction in October 2009. Temperature and strain measurements have been recorded intermittently since construction. The prestress loss results are compared to estimates from design documents.
机译:由于预应力混凝土作为建筑材料的优越性,已越来越多地用于桥梁的建筑中。这就需要对其现场性能进行更好的评估。预应力混凝土结构的结构完整性和性能的最重要指标之一是预应力随时间的空间分布,即沿结构的预应力损失。随时间变化的预应力损失是由于混凝土的尺寸变化所引起的,除了蠕变和收缩以外,混凝土还因蠕变和收缩而松弛。要确保混凝土中的应力不超过设计应力(这可能会导致结构故障或失效),必须在钢绞线上保持一定的力水平,从而保持混凝土横截面的稳定性。本文提出了一种基于长距离光纤传感器的预应力损失监测方法,该传感器在施工过程中嵌入混凝土中。该方法包括处理各种环境因素,例如温度,以确保现场应用结果的准确性。提出的方法适用于普林斯顿大学校园的后张紧的人行天桥的一部分,即Streicker桥。该部分是一个三跨连续梁,支撑在钢柱上,在2009年10月施工期间,传感器沿结构的关键位置嵌入了传感器。自施工以来,已间歇性地记录了温度和应变测量值。将预应力损失结果与设计文档中的估计值进行比较。

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