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Seismic stability evaluation of embankment slope based on catastrophe theory

机译:基于突变理论的路堤边坡抗震稳定性评估

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Abstract An evaluation method for the seismic stability of embankment slope was presented based on catastrophe theory. Seven control factors, including internal frictional angle, cohesion force, slope height, slope angle, surface gradients, peak acceleration, and distance to fault were selected for analysis of multi-level objective decomposition. According to the normalization formula and the fuzzy subject function produced by combination of catastrophe theory and fuzzy math, a recursive calculation was carried out to obtain a catastrophic affiliated functional value, which can be used to evaluate the seismic stability of embankment slope. Fifteen samples were used to verify the effectiveness of this method. The results show that compared with the traditional quantitative method, the catastrophe progression owns higher accuracy and good application potential in predicting the seismic stability of embankment slope.
机译:摘要提出了基于突变理论的路堤边坡抗震稳定性评估方法。选择了七个控制因素,包括内摩擦角,内聚力,斜坡高度,斜坡角,表面梯度,峰值加速度和到故障点的距离,以进行多级目标分解的分析。根据突变理论和模糊数学相结合的归一化公式和模糊主体函数,进行了递归计算,得到了突变的关联函数值,可用于评价路堤边坡的地震稳定性。使用十五个样品来验证该方法的有效性。结果表明,与传统的定量方法相比,突变级数具有较高的精度,在预测路堤边坡的地震稳定性方面具有良好的应用潜力。

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