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Centrifuge modelling of reverse fault-foundation interaction

机译:反向故障-基础相互作用的离心机建模

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摘要

The propagation of reverse faults through soil to the ground surface has been observed to cause damage to surface infrastructure. However, the interaction between a fault propagating through a sand layer and a shallow foundation can be beneficial for heavily loaded foundations by causing deviation of the fault away from the foundation. This was studied in a series of centrifuge model tests in which reverse faults of dip angle 60 degrees (at bedrock level) were initiated through a sand layer, close to shallow foundations. The tests revealed subtle interaction between the fault and the shallow foundation so that the foundation and soil response depend on the foundation loading, position, breadth and flexibility. Heavily loaded rigid foundations appeared best able to deviate fault rupture away from the foundation but this deviation could be associated with significant foundation rotations. However, a lightly loaded foundation was unable to deviate a reverse fault and the fault emerged beneath the foundation. This led to gapping beneath the foundation as well as significant rotations and may cause severe structural distress. As well as providing insight into the mechanisms of behaviour, the data from the tests is used to validate finite element analyses in a separate article.
机译:已经观察到反向断层通过土壤传播到地面,从而破坏了地面基础设施。然而,通过引起断层偏离地基,断层在砂层和浅层地基中传播时的相互作用对于重载地基可能是有益的。在一系列离心模型试验中对此进行了研究,在该试验中,倾角为60度(在基岩水平)的反向断层是通过靠近浅层基础的砂层引发的。测试表明断层与浅层基础之间存在微妙的相互作用,因此基础和土壤响应取决于基础荷载,位置,宽度和柔性。较重的刚性基础看来最能使断层破裂偏离基础,但这种偏离可能与基础的明显旋转有关。但是,轻载的基础无法偏离反向故障,并且该故障出现在基础下方。这导致地基下方的缝隙以及明显的旋转,并可能导致严重的结构困扰。除了提供对行为机制的深入了解之外,测试数据还用于在另一篇文章中验证有限元分析。

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