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3-D elasto-plastic spectral element application to evaluate the stability of large-scale landslides

机译:3-D弹塑性谱元在评估大型滑坡稳定性中的应用

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This research deals with the computational accuracy impact factors of elasto-plastic spectral element applications to slope stability. It contains three categories of impact factors: 1) modelling domain related parameters, 2) spectral parameters, and 3)Ⅹ elasto-plastic parameters. Each category has many accuracy impact factors. The modelling domain and elasto-plastic related impact factors can be equally applied to the elasto-plastic finite element method, however spectral corrections can only be applied for spectral element applications. This work presents a numerical evaluation of all three impact factors to the stability factor of a slope in three representative theoretical domains of slope angle, β, of 26.26°, 36.69°, and 45°. In addition, the study focuses on spectral element applications to slope stability evaluation, because it is a new and reliable approach in slope stability modelling. It has several benefits over the existing modelling methods to apply for slope stability modelling: 1) geometric flexibility of the finite elements, 2) high computational efficiency, 3) reliable spectral accuracy, and 4) high numerical stability.
机译:这项研究涉及弹塑性谱元素应用到边坡稳定性的计算精度影响因素。它包含三类影响因素:1)建模域相关参数,2)光谱参数和3)Ⅹ弹塑性参数。每个类别都有许多准确性影响因素。建模域和与弹塑性相关的影响因子可以同等地应用于弹塑性有限元方法,但是频谱校正只能应用于频谱元素应用。这项工作提出了在斜坡角β的三个代表性理论域(分别为26.26°,36.69°和45°)中对斜坡稳定性因子的所有三个影响因子的数值评估。此外,由于它是边坡稳定性建模中的一种新的可靠方法,因此本研究着重于将光谱元素应用到边坡稳定性评估中。与现有的用于边坡稳定性建模的建模方法相比,它具有多个优点:1)有限元的几何灵活性,2)高计算效率,3)可靠的光谱精度,以及4)高数值稳定性。

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