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首页> 外文期刊>Journal of Sound and Vibration >Determination of the axial force on stay cables accounting for their bending stiffness and rotational end restraints by free vibration tests
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Determination of the axial force on stay cables accounting for their bending stiffness and rotational end restraints by free vibration tests

机译:通过自由振动试验确定考虑了其弯曲刚度和旋转端部约束的斜拉索的轴向力

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摘要

Determination of the axial force in terms of its natural frequencies may be significantly influenced by the bending stiffness of the cable and the rotational elastic restraints at the ends, depending on the geometrical and mechanical parameters of the cable and its supports and restraints, particularly in cement-grouted parallel-bundle wire cables. The paper presents all explicit analytical expression for the natural frequencies taking into account both the bending stiffness of the cable and the rotational restraint at the ends that may be used to determine the axial force. While the bending stiffness of the cable and the axial force are selected as variables to attain an optimal match between analytical and experimental data, the rotational stiffness at the ends is treated as a known parameter in that process. The degree of rotational restraint at the ends cannot be accurately inferred from the sequence of the experimentally determined natural frequencies, since this parameter does not appreciably affect the progression of their values. Techniques are discussed that allow approximate determination of the rotational stiffness at the ends for the most common arrangements of anchors and cables with, and without, intermediate supports provided by deviators located near the ends. The axial force and the bending stiffness of the cable are both simultaneously adjusted by matching the natural frequencies of the analytical model with the experimental values. The proposed approach leads to a reduction of the error in the estimation of the axial force for short cables with relatively high bending stiffness such as those typical of cement-grouted parallel-bundle wire cables often used as cable stays for bridges until the early 1990s. (c) 2008 Elsevier Ltd. All rights reserved.
机译:根据电缆的弯曲频率和端部的旋转弹性约束,取决于电缆的固有频率的轴向力的确定可能会受到影响,具体取决于电缆及其支撑和约束的几何和机械参数,尤其是在水泥中灌浆的平行捆束电缆。本文介绍了固有频率的所有显式解析表达式,同时考虑了电缆的弯曲刚度和可用于确定轴向力的端部旋转约束。在选择电缆的弯曲刚度和轴向力作为变量以实现分析和实验数据之间的最佳匹配的同时,将端部的旋转刚度视为该过程中的已知参数。无法从实验确定的固有频率的序列中准确推断出末端的旋转约束程度,因为该参数不会明显影响其值的变化。讨论了对于具有和不具有由位于端部附近的偏斜器提供的中间支撑的最常见布置的锚和电缆的布置,允许近似确定端部的旋转刚度的技术。通过将分析模型的固有频率与实验值进行匹配,可以同时调整电缆的轴向力和弯曲刚度。对于具有相对较高弯曲刚度的短电缆,例如水泥灌浆的平行捆扎电缆,通常用作桥梁的斜拉桥,直到1990年代初期,典型的做法是,所提出的方法可以减小轴向力估算中的误差。 (c)2008 Elsevier Ltd.保留所有权利。

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