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Submarine slope failures due to pipe structure formation

机译:管道结构形成导致海底斜坡破坏

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摘要

There is a strong spatial correlation between submarine slope failures and the occurrence of gas hydrates. This has been attributed to the dynamic nature of gas hydrate systems and the potential reduction of slope stability due to bottom water warming or sea level drop. However, 30 years of research into this process found no solid supporting evidence. Here we present new reflection seismic data from the Arctic Ocean and numerical modelling results supporting a different link between hydrates and slope stability. Hydrates reduce sediment permeability and cause build-up of overpressure at the base of the gas hydrate stability zone. Resulting hydro-fracturing forms pipe structures as pathways for overpressured fluids to migrate upward. Where these pipe structures reach shallow permeable beds, this overpressure transfers laterally and destabilises the slope. This process reconciles the spatial correlation of submarine landslides and gas hydrate, and it is independent of environmental change and water depth.
机译:海底斜坡破坏与天然气水合物的发生之间存在很强的空间相关性。这归因于天然气水合物系统的动态特性以及由于底水变暖或海平面下降而引起的边坡稳定性的潜在降低。但是,对该过程进行了30年的研究,没有可靠的证据。在这里,我们介绍了来自北冰洋的新反射地震数据和数值模拟结果,这些数据支持水合物和边坡稳定性之间的不同联系。水合物降低了沉积物的渗透性,并导致天然气水合物稳定区底部的超压累积。产生的水力压裂形成管道结构,作为超压流体向上迁移的通道。在这些管道结构到达浅层可渗透层的地方,这种超压横向传输并破坏了斜坡的稳定性。这个过程调和了海底滑坡和天然气水合物的空间相关性,并且与环境变化和水深无关。

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