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Finite element modelling of prefabricated vertical drains using 1D drainage elements with attached smear zones

机译:预制垂直排水管的有限元建模,使用带附着涂抹区域的一维排水管元

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Prefabricated vertical drains (PVDs) are frequently used to accelerate the dissipation of excess pore pressures in low permeability soils subjected to load from overbearing structures, such as embankments. However, it is well known that the installation of PVDs leads to the formation of a smear zone in the surrounding soil, which will have a reduced radial permeability that hinders the flow of pore water towards the PVDs. It is essential that the smear effect be taken into account for estimating the rate of consolidation, but setting up finite element models which capture the geometry of many individual PVDs and smear zones involves building complicated meshes. In this paper, a new simulation tool is introduced which involves the attachment of a smear zone to drainage elements, allowing automatic reduction of the radial permeability at mesh integration points that fall within the smear zone, together with consideration of non-uniform hydraulic properties. This saves the analyst having to set up multiple separate regions within the mesh to capture smear effects, at no expense of accuracy.
机译:预制垂直排水管(PVD)经常用于加速承受过高承载结构(如路堤)荷载的低渗透性土壤中多余孔隙压力的消散。然而,众所周知,PVD的安装导致在周围土壤中形成涂片区,该涂片区将具有减小的径向渗透性,这阻碍了孔隙水向PVD的流动。在估计固结率时,必须考虑拖尾效应,但是建立捕获许多单个PVD和拖尾区域几何形状的有限元模型需要构建复杂的网格。在本文中,引入了一种新的模拟工具,该工具涉及将涂片区附加到排水元件上,从而允许自动降低落在该涂片区内的网格集成点处的径向渗透率,同时考虑到水力特性的不均匀性。这省去了分析人员必须在网格内设置多个单独区域以捕获拖影效果的准确性,而无需牺牲任何准确性。

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