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Modelling land subsidence processes induced by fast rainwater infiltration through fractures into the unsaturated zone

机译:模拟雨水通过裂缝快速渗入非饱和带而引起的地面沉降过程

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The aim of this work is to better understand rainfall-induced fast infiltration of water through fractures into the subsurface, as well as to estimate its influence on mechanical deformation, i.e. land subsidence. Flow in the partially saturated soil (matrix, fracture) is described with the model concept of two-phase flow in porous media and the stress-strain analysis is carried out with the hardening soil model (elasto-plastic model) using a double stiffness concept for elasticity in combination with isotropic strain hardening. Flow and deformations are weakly coupled. In this research several numerical studies are presented. An analysis of the influence of fracture and surface inclination on flow and deformation is carried out. The results of the numerical study show that infiltration into a system with a horizontal surface and without fracture only leads to vertical deformations. Infiltration into a system with a vertical fracture has nearly no influence on the deformation because the water mainly propagates in the vertical direction due to gravity. Infiltration into a system with a horizontal surface and an inclined fracture results in considerable horizontal and vertical deformations. Such deformations are further increased when the surface is inclined.
机译:这项工作的目的是更好地了解降雨引起的水通过裂缝快速渗透到地下,并估算其对机械变形(即地面沉降)的影响。用多孔介质中两相流的模型概念描述部分饱和土壤中的流动(矩阵,裂缝),并使用双重刚度概念用硬化土壤模型(弹塑性模型)进行应力-应变分析。弹性和各向同性应变硬化相结合。流动和变形是弱耦合的。在这项研究中,提出了一些数值研究。进行了断裂和表面倾斜对流动和变形的影响分析。数值研究的结果表明,渗入具有水平表面且没有破裂的系统只会导致垂直变形。渗透到具有垂直裂缝的系统中对变形几乎没有影响,因为水主要由于重力而沿垂直方向传播。渗入具有水平表面和倾斜裂缝的系统中会导致相当大的水平和垂直变形。当表面倾斜时,这种变形会进一步增加。

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