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Condition Assessment of PC Tendon Duct Filling by Elastic Wave Velocity Mapping

机译:弹性波速度映射法估算PC肌腱导管充盈状态

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摘要

Imaging techniques are high in demand for modern nondestructive evaluation of large-scale concrete structures. The travel-time tomography (TTT) technique, which is based on the principle of mapping the change of propagation velocity of transient elastic waves in a measured object, has found increasing application for assessing in situ concrete structures. The primary aim of this technique is to detect defects that exist in a structure. The TTT technique can offer an effective means for assessing tendon duct filling of prestressed concrete (PC) elements. This study is aimed at clarifying some of the issues pertaining to the reliability of the technique for this purpose, such as sensor arrangement, model, meshing, type of tendon sheath, thickness of sheath, and material type as well as the scale of inhomogeneity. The work involved 2D simulations of wave motions, signal processing to extract travel time of waves, and tomography reconstruction computation for velocity mapping of defect in tendon duct.
机译:对于大型混凝土结构的现代无损评估,成像技术的需求很高。传播时间断层扫描(TTT)技术基于绘制瞬态弹性波在被测物体中传播速度变化的原理,已发现越来越多地用于评估现场混凝土结构。该技术的主要目的是检测结构中存在的缺陷。 TTT技术可以为评估预应力混凝土(PC)单元的筋管填充提供有效的手段。这项研究旨在阐明与该技术的可靠性有关的一些问题,例如传感器布置,模型,啮合,腱鞘的类型,鞘的厚度,材料类型以及不均匀程度。这项工作包括波浪运动的二维模拟,提取波浪传播时间的信号处理以及用于对肌腱导管中的缺陷进行速度映射的层析成像重建计算。

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