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Analytical prediction for tunnelling-induced ground movements in sands considering disturbance

机译:考虑扰动的砂土中隧道诱发地面运动的分析预测

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Construction inevitably leads to the disturbance to soils, which will change the properties of soils. Therefore, the physical and mechanical parameters obtained by the laboratory tests only reflect the properties of soils at a certain state, but not the true properties of soils during the whole process of construction. It is found that the initial relative density has a strong effect on the strength-deformation properties of sands on basis of a total of twenty-four triaxial compressed tests of dry sands. Based on Disturbed State Concept theory (Desai, 1974), a unified disturbance function is proposed by taking the relative density as the disturbance parameter. Furthermore, a novel approach that related the shear modulus with the degree of disturbance is developed. Then, according to former studies (Kondner and Zelasko, 1963; Kondner and Horner, 1965) and the proposed approach an analytical solution for ground movements considering construction disturbance is established. To study the validity of the proposed analytical solution one example is analyzed. It is found that both the positive (decrease in relative density) and negative (increase in relative density) disturbance have an obvious influence on the ground movements of the soil around the tunnel. The construction disturbance should be considered in predicting the ground movements by using the analytical solution.
机译:施工不可避免地导致对土壤的干扰,这将改变土壤的性质。因此,通过实验室测试获得的物理和机械参数仅反映一定状态下的土壤特性,而不能反映整个施工过程中土壤的真实特性。根据总共二十四份干砂的三轴压缩试验,发现初始相对密度对砂的强度-变形特性有很大的影响。基于扰动状态概念理论(Desai,1974),以相对密度为扰动参数,提出了统一的扰动函数。此外,开发了一种将剪切模量与扰动程度相关的新方法。然后,根据以前的研究(Kondner和Zelasko,1963年; Kondner和Horner,1965年)和所提出的方法,建立了一种考虑构造扰动的地面运动解析解。为了研究所提出的分析解决方案的有效性,分析了一个例子。发现正(相对密度减小)和负(相对密度增加)扰动对隧道周围土壤的地面运动都有明显的影响。在使用分析解决方案预测地面运动时,应考虑施工干扰。

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