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Links between sediment consolidation and Cascadia megathrust slip behaviour

机译:沉积物整合与Cascadia Megathrust滑动行为之间的联系

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At sediment-rich subduction zones, megathrust slip behaviour and forearc deformation are tightly linked to the physical properties and in situ stresses within underthrust and accreted sediments. Yet the role of sediment consolidation at the onset of subduction in controlling the downdip evolution and along-strike variation in megathrust fault properties and accretionary wedge structure is poorly known. Here we use controlled-source seismic data combined with ocean drilling data to constrain the sediment consolidation and in situ stress state near the deformation front of the Cascadia subduction zone. Offshore Washington where the megathrust is inferred to be strongly locked, we find over-consolidated sediments near the deformation front that are incorporated into a strong outer wedge, with little sediment subducted. These conditions are favourable for strain accumulation on the megathrust and potential earthquake rupture close to the trench. In contrast, offshore Central Oregon, a thick under-consolidated sediment sequence is subducting, and is probably associated with elevated pore fluid pressures on the megathrust in a region where reduced locking is inferred. Our results suggest that the consolidation state of the sediments near the deformation front is a key factor contributing to megathrust slip behaviour and its along-strike variation, and it may also have a significant role in the deformation style of the accretionary wedge.
机译:在沉积物的俯冲区域,巨大的滑动行为和前臂变形与欠支须和沉积物中的物理性质紧密相关,并原位应力。然而,沉积物整理在控制下展示演化和沿着巨大故障特性的沿着撞击变化和增速楔形结构时的作用是众所周知的。在这里,我们使用控制源地震数据与海洋钻井数据相结合,以限制沉积物固结和靠近Cascadia俯冲区的变形前面附近的原位应力状态。海上华盛顿在巨大锁定的情况下,我们在变形前面找到过综合的沉积物,该沉积物纳入强外楔,几乎没有沉积物。这些条件有利于巨大的巨大累积和靠近沟槽的潜在地震破裂。相比之下,俄勒冈州中部,厚度良好的沉积物序列是低压化的,并且在推断锁定减少锁定的区域中的巨大孔隙流体压力可能与升高的孔隙流体压力相关联。我们的研究结果表明,变形前沿附近的沉积物的整合状态是有助于巨大的滑动行为及其沿着撞击变化的关键因素,并且在逆转楔的变形风格中也可能具有重要作用。

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