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Impact of Earthquake Characteristics on Seismic Slope Stability Using Modified Pseudodynamic Method

机译:改进的拟动力方法对地震特征对地震边坡稳定性的影响

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Seismic slope stability analysis is often limited by the ability to encompass specific earthquake characteristics, such as shaking amplitude, frequency, and time as well as varying soil properties, such as cohesion and friction angle across the depth with consideration of damping and amplification. In this paper, a simple procedure that combines the discretization-based kinematic analysis and modified pseudodynamic method is presented to offer a more holistic analysis considering earthquake and soil characteristics more appropriately. This is achieved by the implementation of the discretization-based kinematic analysis along with a modified pseudodynamic method. The discretization technique aids to generate a kinematically admissible failure surface with considerations to varied soil strength parameters. Its significance lies in the preprocessing to generate a unique failure mechanism dependent on the varied soil properties of the slope while also facilitating the work rate calculations. The use of the modified pseudodynamic method is adopted in this study to overcome the shortcomings of the pseudostatic and simple pseudodynamic method, enabling one to consider the complete time history of earthquake-induced ground movement, having also considered the amplification effect when shaking approaches the soil's natural frequency. Equating the external and internal rates of work by integration of elementary rates yields the closed-form solution in yield seismic acceleration and/or slope-bearing capacity. A parametric study with a range of independent variables, accompanied with detailed discussion, is also presented to offer a more pragmatic perspective on the performance of nonuniform stratified slopes subjected to earthquakes.
机译:地震边坡稳定性分析通常受限于能否包含特定的地震特征(例如,振动幅度,频率和时间)以及变化的土壤特性(例如,在整个深度上的内聚力和摩擦角,考虑到阻尼和放大作用)的能力。本文提出了一种简单的方法,将基于离散化的运动学分析和改进的拟动力方法相结合,可以更适当地考虑地震和土壤特征进行整体分析。这是通过基于离散化的运动学分析以及改进的伪动力学方法实现的。考虑到变化的土壤强度参数,离散化技术有助于生成运动学上允许的破坏面。它的意义在于进行预处理以生成独特的破坏机制,该机制取决于坡度变化的土壤特性,同时也便于计算工作效率。本研究采用改进的拟动力方法,克服了拟静态方法和简单拟动力方法的缺点,使人们可以考虑地震引起的地面运动的完整时程,还考虑了振动接近土壤时的放大效应。自然频率。通过基本速率的积分使外部和内部功率相等,可以得出屈服地震加速度和/或斜率承载力的闭式解。还提出了一个带有一系列自变量的参数研究,并进行了详细的讨论,从而为遭受地震的非均匀分层斜坡的性能提供了更为实用的观点。

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