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Timoshenko beam models for the coupled analysis of building response to tunnelling

机译:Timoshenko梁模型,用于建筑物对隧道响应的耦合分析

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Timoshenko beam theory and the limiting tensile strain method are implemented into the computer program ASRE for the coupled analysis of building response to tunnelling using an elastic two-stage analysis method. A framework to characterise an equivalent Timoshenko beam is proposed that is consistent with previous works. More specifically, buildings are represented through equivalent anisotropic beam models in terms of axial, shear and bending cross-sectional stiffnesses, as well as the offset between the axis and the ground surface. Firstly, model predictions are compared with centrifuge results of tunnelling-induced distortions of building models with facade openings. Then, simple beams with varying Young's modulus to shear modulus ratios are analysed. Results detail tunnelling-induced displacements, internal forces, and deformations, as well as bending and diagonal strains of the Timoshenko beams; the way in which both axis-ground offset and shear flexibility level alter the tunnel-structure interaction mechanism was quantified. For damage assessments, an improved approach is proposed to estimate bending and diagonal strains. Finally, to enable practical implementation, design charts that relate both the relative soil-structure stiffness parameters (that account for both bending and shear contributions) and the foundation plan size ratio to the deflection ratio modification factors are given.
机译:Timoshenko梁理论和极限拉伸应变方法被实施到计算机程序ASRE中,以使用弹性两阶段分析方法对建筑物对隧道的响应进行耦合分析。提出了表征等效提莫申科光束的框架,该框架与先前的工作是一致的。更具体地说,建筑物通过轴向,剪切和弯曲的横截面刚度以及轴与地面之间的偏移,通过等效的各向异性梁模型表示。首先,将模型预测结果与离心试验结果进行比较,这些结果是隧道效应引起的带有立面开口的建筑模型变形的结果。然后,分析杨氏模量与剪切模量比变化的简单梁。结果详细说明了隧道效应引起的位移,内力和变形,以及Timoshenko梁的弯曲和对角应变;定量了轴-地偏移量和剪切挠性水平改变隧道-结构相互作用机制的方式。对于损伤评估,提出了一种改进的方法来估计弯曲和对角线应变。最后,为便于实际实施,给出了将相对土壤结构刚度参数(同时考虑弯曲和剪切贡献)和基础计划尺寸比与挠度比修正因子相关联的设计图。

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