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Seismic stability analysis of rock slopes using the numerical manifold method

机译:数值流形方法分析岩质边坡的地震稳定性

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Seismic stability of rock slopes is numerically investigated using the numerical manifold method (NMM). Instability mechanisms of rock slopes under horizontal and vertical ground accelerations are revealed, respectively. A block resting on an inclined slope moves when the total destabilizing force exceeds the total resisting force. Horizontal ground acceleration enlarges the destabilizing force, which makes the originally moving block (i.e., φ<α) move faster and produces the originally stable block (i.e., φ>α) a finite displacement. When a vertical ground acceleration is introduced, the friction angle along the interface may be significantly reduced or even disappear, which is known as the ultra low friction phenomenon. Because of this phenomenon, the vertical ground acceleration reduces the resisting force, which makes the originally stable block unstable. Its effect depends on the frequency and amplitude of the vertical ground acceleration. The validity of the NMM in predicting the ground acceleration induced permanent displacement has been verified by comparing its results with the analytical solutions and the Newmark-β numerical integration solutions. Furthermore, the proper values of control parameters for NMM calculations are suggested.
机译:使用数值流形方法(NMM)对岩石边坡的地震稳定性进行了数值研究。揭示了在水平和垂直地面加速度作用下岩石边坡的失稳机理。当总的去稳定力超过总的抵抗力时,一块倾斜的斜坡上的块就会移动。水平地面加速度会增大去稳定力,从而使原始移动的块(即φ<α)运动得更快,并使原始稳定的块(即φ>α)产生有限位移。当引入垂直地面加速度时,沿界面的摩擦角可能会大大减小甚至消失,这被称为超低摩擦现象。由于这种现象,垂直地面加速度会减小阻力,从而使最初稳定的块变得不稳定。其效果取决于垂直地面加速度的频率和幅度。通过将NMM的结果与解析解和Newmark-β数值积分解进行比较,验证了NMM在预测地面加速度引起的永久位移中的有效性。此外,建议用于NMM计算的控制参数的正确值。

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