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The Shear-lag Effect of Thin-walled Box Girder under Vertical Earthquake Excitation

机译:薄壁箱梁在垂直地震激励下的剪切滞后效应

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摘要

The variation method based on the energy variation principle is proved to be accurate and valid for analyzing the shear lag effect of box girder under static and dynamic load. Meanwhile, dynamic problems gradually become the key factors in engineering practice. Therefore, a method for calculating the shear lag effect in thin-walled box girder under vertical seismic excitation is proposed by applying Hamilton Principle in this paper. The Timoshenko shear deformation is taken into account. And a new definition of shear lag ratio for box girder is given. What's more, some conclusions are drawn by analysis of numerical example. The results show that small amplitude of earthquake ground motion can generate high stress and obvious shear lag, especially in the region of resonance. And the influence of rotary inertia cannot be ignored for analyzing the shear lag effect. With the increase of span to width ratio, shear lag effect becomes smaller and smaller. These research conclusions will be useful for the engineering practice and enrich the theoretical studies of box girders.
机译:证明了基于能量变化原理的变形方法是准确的,有效地用于分析静态和动态负荷下箱梁的剪切滞后效果。同时,动态问题逐渐成为工程实践中的关键因素。因此,通过在本文中应用Hamilton原理,提出了一种在垂直地震激励下计算薄壁箱梁中的剪切滞后效果的方法。考虑Timoshenko剪切变形。给出了箱梁剪切滞后比的新定义。更重要的是,通过对数值示例的分析来绘制的一些结论。结果表明,地震地面运动的小幅度可以产生高应力和明显的剪切滞后,尤其是在共振区域。并且不能忽视旋转惯性的影响,以分析剪切滞后效应。随着跨度增加到宽比,剪切滞后效果变得更小,更小。这些研究结论将有助于工程实践,丰富箱梁的理论研究。

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