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Sedimentation as a Control for Large Submarine Landslides: Mechanical Modeling and Analysis of the Santa Barbara Basin

机译:沉积物作为大型潜水艇滑坡的控制:Santa Barbara盆地的机械建模与分析

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摘要

The volume of submarine landslides is a key controlling factor for their damage potential. Particularly large landslides are found in active sedimentary regions. However, the mechanism controlling their volume, and in particular their thickness, remains unclear. Here we present a mechanism that explains how rapid sedimentation can lead to localized slope failure at a preferential depth and set the conditions for the emergence of large-scale slope-parallel landslides. We account for the contractive shearing behavior of the sediments, which locally accelerates the development of overpressures in the pore fluid, even on very mild slopes. When applied to the Santa Barbara basin, the mechanism offers an explanation for the regional variation in landslide thickness and their sedimentation-controlled recurrence. Although earthquakes are the most likely trigger for these mass movements, our results suggest that the sedimentation process controls the geometry of their source region. The mechanism introduced here is generally applicable and can provide initial conditions for subsequent landslide triggering, runout, and tsunami-source analyses in sedimentary regions.
机译:潜水艇山体积的体积是其损坏潜力的关键控制因素。在活动沉积区域中发现了特别大的山体滑坡。然而,控制其体积的机构,特别是它们的厚度仍然不清楚。在这里,我们提出了一种解决方法,该机制解释了快速沉降在优先深度下的局部坡度故障,并设定了大规模斜坡平行滑坡出现的条件。我们考虑了沉积物的收缩剪切行为,即使在非常温和的斜坡上,局部地加速了孔隙流体中过度压力的发展。当应用于Santa Barbara盆地时,该机制提供了对山体滑坡厚度的区域变化及其沉降控制复发的解释。虽然地震是对这些大众运动的最有可能的触发,但我们的结果表明沉降过程控制了源区的几何形状。这里介绍的机制通常是适用的,可以为沉积地区的后续滑坡触发,跳动和海啸分析提供初始条件。

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