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Static behavior of a laterally loaded guardrail post in sloping ground by LS-DYNA

机译:LS-DYNA在斜坡上侧向加载的护栏立柱的静态行为

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This study aims to present accurate soil modeling and validation of a single roadside guardrail post as well as a single concrete pile installed near cut slopes or compacted sloping embankment. The conventional Winkler' s elastic spring model and p-y curve approach for horizontal ground cannot directly be applied to sloping ground where ultimate soil resistance is significantly dependent on ground inclination. In this study, both grid-based 3-D FE model and particle-based SPH (smoothed particle hydrodynamics) model available in LS-DYNA have been adopted to predict the static behavior of a laterally loaded guardrail post. The SPH model has potential to eliminate any artificial soil stiffness due to the deterioration of the node-connected Lagrangian soil mesh. For this purpose, this study comprises two parts. Firstly, only 3-D FE modeling has been tested to show the numerical validity for a single concrete pile in sloping ground using Mohr-Coulomb material. However, this material option cannot be implemented for SPH elements. Nevertheless, Mohr-Coulomb model has been used since this material model requires six input soil data that can be obtained from the comparative papers in literatures. Secondly, this work is extended to compute the lateral resistance of a guardrail post located near the slope using the hybrid approach that combines Lagrange FE elements and SPH elements by the suitable node-merging option provided by LS-DYNA. For this analysis, the FHWA soil material developed for application to road-base soils has been used and also allows the application of SPH element.
机译:这项研究旨在提供准确的土壤建模和单个路边护栏柱以及安装在开挖边坡或压实倾斜路堤附近的单个混凝土桩的准确模型。传统的Winkler弹性弹簧模型和用于水平地面的p-y曲线方法不能直接应用于倾斜地面,在该地面上,最终土壤阻力很大程度上取决于地面的倾斜度。在这项研究中,LS-DYNA中可用的基于网格的3-D FE模型和基于颗粒的SPH(光滑颗粒流体动力学)模型均已被用来预测侧向加载的护栏柱的静态行为。 SPH模型具有消除由于节点连接的拉格朗日土壤网格的退化而导致的任何人工土壤刚度的潜力。为此,本研究包括两个部分。首先,仅测试了3-D FE模型以显示使用Mohr-Coulomb材料在倾斜地面上的单个混凝土桩的数值有效性。但是,该材料选项无法用于SPH元素。然而,由于该材料模型需要六个输入土壤数据,因此可以使用Mohr-Coulomb模型,这些数据可以从文献中的比较论文中获得。其次,这项工作被扩展为使用混合方法(通过LS-DYNA提供的合适的节点合并选项,将Lagrange FE元素和SPH元素组合在一起)来计算位于斜坡附近的护栏柱的侧向阻力。对于此分析,已使用为公路基土壤开发的FHWA土壤材料,并且还允许使用SPH元素。

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