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首页> 外文期刊>KSCE journal of civil engineering >Numerical Simulation of Seepage-induced Behavior of Tunnel for Analyzing Deformation Characteristic and Estimating Geotechnical Parameters
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Numerical Simulation of Seepage-induced Behavior of Tunnel for Analyzing Deformation Characteristic and Estimating Geotechnical Parameters

机译:隧道渗流特性数值模拟分析变形特征及岩土参数估算

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摘要

The Longitudinal Deformation Profile (LDP) represents the tunnel wall displacements along the axis of the tunnel, which can be used to estimate support loads and final tunnel deformations. This paper presents the effects of groundwater flow on the radial and axial LDPs of deep circular tunnels in an elasto-plastic and homogeneous ground and the usage of a back-analysis method in order to estimate geotechnical parameters using LDP under groundwater flow. A deep tunnel was chosen to remove the surface effect of shallow one, so that the analysis was concentrated on the ground response by tunnel excavation. The elasto-plastic ground was considered to sufficiently reflect how the ground behave but it may vary depending on the failure criteria and the flow rule. A number of parametric studies have been conducted, which cover a wide range of tunnel and ground conditions, liner installation, unsupported ground length and drainage conditions at the tunnel wall (fully drained and partially drained cases). The seepage forces are developed in the fully drained case, resulting in the increase of effective stresses in the radial and axial directions. The pore pressure developed in the partially drained case squeezes the tunnel wall radially, not axially. The liner installation and the unsupported ground length also affect tunnel wall deformations. Results from the numerical simulations show that the groundwater flow at the tunnel wall influences deformations both radially and axially. For the application of these results, a back-analysis which uses a relative convergence curve determined from LDP is performed to estimate geotechnical properties. Several numerical studies have been conducted in order to test this back-analysis method. The results show that estimated parameters match well with the real parameters.
机译:纵向变形轮廓(LDP)表示沿隧道轴线的隧道壁位移,可用于估算支撑载荷和最终隧道变形。本文介绍了地下水流对弹塑性均质深层圆形隧道的径向和轴向LDPs的影响,以及使用反分析方法估算地下水流下使用LDP的岩土参数的方法。选择一条深层的隧道来消除浅层隧道的表面效应,从而使分析集中在隧道开挖对地面的响应上。弹塑性地面被认为足以反映地面的行为,但它可能会根据破坏准则和流量规则而变化。已经进行了许多参数研究,涉及范围广泛的隧道和地面情况,衬砌安装,无支撑的地面长度和隧道壁处的排水条件(完全排水和部分排水的情况)。在完全排水的情况下会产生渗流力,从而导致沿径向和轴向的有效应力增加。在部分排水的壳体中产生的孔隙压力沿径向而不是沿轴向挤压隧道壁。衬砌的安装和不受支撑的地面长度也会影响隧道壁的变形。数值模拟结果表明,隧道壁处的地下水流影响径向和轴向变形。为了应用这些结果,进行了使用从LDP确定的相对收敛曲线的反向分析来估计岩土属性。为了测试这种反向分析方法,已经进行了一些数值研究。结果表明,估计参数与真实参数匹配良好。

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