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Aspects of Vibration-Based Methods for the Prestressing Estimate in Concrete Beams with Internal Bonded or Unbonded Tendons

机译:基于振动的方法,用于内粘合或未粘结筋的混凝土梁预应力估计

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The estimate of internal prestressing in concrete beams is essential for the assessment of their structural reliability. Many scholars have tackled multiple and diverse methods to estimate the measurable effects of prestressing. Among them, many experimented with dynamics-based techniques; however, these clash with the theoretical independence of the natural frequencies of the forces of internally prestressed beams. This paper examines the feasibility of a hybrid approach based on dynamic identification and the knowledge of the elastic modulus. Specifically, the author considered the effect of the axial deformation on the beam length and the weight per unit of volume. It is questioned whether the uncertainties related to the estimate of the elastic modulus and the first natural frequency yield reasonable estimates of the internal prestressing. The experimental testing of a set of full-scale concrete girders with known design prestressing supports a discussion about its practicability. The author found that the uncertainty in estimating the natural frequencies and elastic modulus significantly undermines a reliable estimate of the prestressing state.
机译:混凝土梁内部预应力的估计对于评估其结构可靠性至关重要。许多学者都解决了多种多样化的方法来估计预应力的可衡量影响。其中,许多人尝试了基于动态的技术;然而,这些冲突具有内部预应力梁的力的自然频率的理论独立性。本文研究了基于动态识别和弹性模量的知识的混合方法的可行性。具体地,作者认为轴向变形对光束长度和每单位体积重量的影响。它质疑与估计弹性模量和第一天然频率的估计有关的不确定性是否合理估计内部预应力。具有已知设计预应力的一套全尺度混凝土梁的实验测试支持讨论其实用性。作者发现,估计自然频率和弹性模量的不确定性显着地破坏了预应力状态的可靠估计。

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