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A Hydro-Geomechanical View of Seal Formation and Failure in Overpressured Basins

机译:超压盆地密封形成与破坏的水文地质力学观点

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The formation of seals, and the consequent retention of overpressure, is a common and expected event during normal basin evolution in active basins that have a significant mudrock succession. Seal failure, and the resultant limitation to fluid-pressure increase (valve action), is also an expected process. Hydro-geomechanical concepts, including poro-elasto-visco-plasticity (PEVP), and discontinuum models, allow the processes of seal formation and failure to be explained, and predict the state of stress in, and behaviour of, overpressured rocks. Importantly, properties that relate to porosity (such as permeability) can be integrated with this approach. These concepts provide a capability to undertake simulations that can serve as predictive tools. The fluid/rock interactions in a basin can be viewed as a self-organizing system, in the sense that overpressure and the undercompaction it permits retard the creation of accommodation space, and hence act as a negative feedback mechanism that slows the loading rate.
机译:在泥浆演替活跃的活跃盆地中,在正常盆地演化过程中,海豹的形成以及随之而来的超压保持是常见和可预见的事件。密封失效以及由此导致的对流体压力增加(阀作用)的限制也是一个预期的过程。包括孔隙弹性黏塑性(PEVP)和不连续模型在内的水文地质力学概念,可以解释密封形成和破坏的过程,并预测超压岩石的应力状态和行为。重要的是,与孔隙率有关的属性(例如渗透率)可以与该方法集成。这些概念提供了进行可用作预测工具的模拟的能力。盆地中的流体/岩石相互作用可以看作是一个自组织系统,从某种意义上说,过压和欠压实作用会延迟容纳空间的形成,因此起负反馈机制的作用,减慢了加载速度。

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