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A new model for large landslides in sensitive clay using a fracture mechanics approach

机译:基于断裂力学方法的敏感黏土大滑坡新模型

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A new model is proposed for the development of large landslides in sensitive clay, and supported by concepts from fracture mechanics. A key assumption in this new model is that the complete failure surface develops before the onset of significant movement, thus predetermining the final extent of failure. The appearance of retrogression is actually the rearward advancing disruption of a monolithic slide mass over a growing zone of liquefied clay. It is seen that the likelihood of propagation of failure, and the resulting occurrence of a large landslide, depend primarily on the brittleness of the sensitive clay. The potential length of shear band propagation is limited by slope geometry, and increases for higher riverbanks and for flatter slopes above the riverbank. The model explains why large landslides in sensitive clay often terminate just adjacent to a reverse break in slope, such as an older landslide crater or a stream gully. The model also indicates that large landslides in sensitive clay could be expected to occur suddenly after a large single perturbation, such as an earthquake, or after a seemingly innocuous small trigger following the accumulation of a large number of annual load cycles, as observed frequently in nature.
机译:提出了一种在敏感黏土中开发大型滑坡的新模型,并得到了断裂力学概念的支持。这个新模型的一个关键假设是,在重大运动开始之前就形成了完整的破坏面,从而确定了最终的破坏程度。倒退的出现实际上是在液化粘土的生长区域上整体滑块的向后推进破坏。可以看出,破坏传播的可能性以及发生大的滑坡的可能性主要取决于敏感粘土的脆性。剪切带传播的潜在长度受到边坡几何形状的限制,并且对于较高的河岸和在河岸以上的较平坦坡度,剪切带传播的潜在长度会增加。该模型解释了为什么敏感粘土中的大型滑坡经常终止于斜坡的反向断裂附近,例如较旧的滑坡火山口或溪水沟。该模型还表明,预计在敏感的黏土中发生大的滑坡是在一次大的单次扰动(例如地震)之后,或者在大量年度负荷周期的累积之后,看似无害的小触发之后突然发生的,正如在2004年经常观察到的那样。性质。

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