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Experiment and Analysis of Submarine Landslide Model Caused by Elevated Pore Pressure

机译:孔隙压力升高引起的海底滑坡模型试验与分析

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Hydrate decomposition is an important potential cause of marine geological disasters. It is of great significance to understand the dynamic relationship between hydrate reservoir system and the overlying seabed damage caused by its decomposition. The purpose of this study is to understand the instability and destruction mechanisms of a hydrated seabed using physical simulations and to discuss the effects of different geological conditions on seabed stability. By applying pressurized gas to the low permeability silt layer, the excess pore pressure caused by the decomposition of hydrate is simulated and the physical appearance process of the overlying seabed damage is monitored. According to the test results, two conclusions were drawn in this study: (1) Under the action of excess pore pressure caused by hydrate decomposition, typical phenomena of overlying seabed damage include pockmark deformation and shear–slip failure. In shallower or steeper strata, shear-slip failure occurs in the slope. The existence of initial crack in the stratum is the main trigger cause. In thicker formations or gentler slopes, the surface of the seabed has a collapse deformation feature. The occurrence of cracks in the deep soil layer is the main failure mechanism. (2) It was determined that the thickness and slope of the seabed, among other factors, affect the type and extent of seabed damage.
机译:水合物分解是造成海洋地质灾害的重要潜在原因。了解水合物储层系统与分解作用引起的上覆海床破坏之间的动力学关系具有重要意义。本研究的目的是通过物理模拟了解水化海床的不稳定性和破坏机理,并讨论不同地质条件对海床稳定性的影响。通过向低渗透性粉砂层施加压力气体,模拟了由水合物分解引起的过大孔隙压力,并监测了上覆海床破坏的物理外观过程。根据测试结果,本研究得出两个结论:(1)在水合物分解引起的孔隙压力过大的作用下,上覆海床破坏的典型现象包括麻点变形和剪切滑移破坏。在较浅或较陡的地层中,边坡发生剪切滑移破坏。地层中初始裂缝的存在是触发的主要原因。在较厚的地层或较平缓的斜坡上,海床表面具有塌陷变形特征。深层土壤裂缝的产生是其主要破坏机理。 (2)已确定,除其他因素外,海床的厚度和坡度会影响海床破坏的类型和程度。

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