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The effects of normal and shear stress wave phasing on coseismic landslide displacement.

机译:正应力波和切应力波相位对同震滑坡位移的影响。

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摘要

Predictive models used to assess the magnitude of coseismic landslide strain accumulation in response to earthquake ground shaking typically consider slope-parallel ground accelerations only and ignore both the influence of coseismic slope-normal ground accelerations, and the phase relationship between dynamic slope-normal and slope-parallel accelerations. We present results of a laboratory study designed to assess the significance of the phase offset between slope-normal and slope-parallel cyclic stresses on the generation of coseismic landslide displacements. Using a dynamic back-pressured shearbox that is capable of simulating variably-phased slope-normal and slope-parallel dynamic loads, we subjected sediment samples to a range of dynamic loading scenarios indicative of earthquake-induced ground shaking. We detail the variations in strain accumulation observed when slope-normal and slope-parallel stresses occur independently and simultaneously, both in and out of phase, using a range of dynamic stress amplitudes. Our results show that the instantaneous phasing of dynamic stresses is critical in determining the amount of coseismic landslide displacement, which may vary by up to an order of magnitude based solely on wave phasing effects. Instantaneous strain rate is an exponential function of the distance normal to the Mohr Coulomb failure envelope in plots of shear stress against normal effective stress. This distance is strongly controlled by the phase offset between dynamic normal and shear stresses. Our results demonstrate that conditions considered by conventional coseismic slope stability models can either over- or under-estimate earthquake-induced landslide displacement by up to an order of magnitude. This has important implications for accurate assessment of coseismic landslide hazard.
机译:用于评估地震地震引起的同震滑坡应变累积量的预测模型通常只考虑坡度平行的地面加速度,而忽略了同震坡度-法向地面加速度的影响以及动态坡度-法向和坡度之间的相位关系-平行加速度。我们提供了一项实验室研究的结果,该研究旨在评估同震滑坡位移的产生在坡向法向应力和平行坡向应力之间的相位偏移的重要性。使用能够模拟可变相位的坡向法向和坡向平行动态荷载的动态背压剪切箱,我们对沉积物样本进行了一系列指示地震引起的地面震动的动态荷载方案。我们使用一定范围的动态应力振幅,详细描述了当斜向法向应力和平行于平行坡度应力同时独立发生并同时发生时,异相发生的应变累积变化。我们的结果表明,动态应力的瞬时定相对于确定同震滑坡位移的数量至关重要,而仅根据波动定相效应,其可能会变化一个数量级。瞬时应变率是垂直于莫尔库仑破坏包络线的距离的指数函数,在剪切应力与法向有效应力的关系图中。该距离由动态法向应力和剪切应力之间的相位偏移严格控制。我们的结果表明,常规同震边坡稳定性模型所考虑的条件可以高估或低估地震诱发的滑坡位移,幅度可高达一个数量级。这对同震滑坡灾害的准确评估具有重要意义。

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