论文标题

在分层沉积盆中排气的情节,压缩驱动的流体

Episodic, compression-driven fluid venting in layered sedimentary basins

论文作者

Kearney, Luke M., MacMinn, Christopher W., Katz, Richard F., Kirkham, Chris, Cartwright, Joe

论文摘要

在全球沉积盆地中,流体通风现象普遍存在。在近海中,这些局部的流体表达事件被海底的帕克标记在地质记录中存档。通风被广泛解释为通过液压压裂发生,这需要几乎静态的孔隙压力才能引发。这些极端压力的一个常见驱动因素是水平构造压缩,这加压了整个宽区域的沉积柱。流体驱动会导致这种压力突然局部缓解,然后通过持续压缩逐渐充实,导致情节通风。压力充电也将通过从邻近区域的压力扩散而发生,但是以前尚未考虑压缩和压力扩散的综合作用。在这里,我们开发了一种新型的毛弹性模型,用于发作,压缩驱动的通风。我们显示压缩和压力扩散共同设置了所得的排气周期。我们在此通风期间得出了一个简单的分析表达,表明压力扩散可以显着降低与给定压缩速率相关的排气周期。我们的表达使这种压缩速率可以从偶发通风的观察结果中推断出来。我们得出的结论是,压力扩散是导致泥岩主导盆地中的发作流体排气的主要因素。

Fluid venting phenomena are prevalent in sedimentary basins globally. Offshore, these localised fluid-expulsion events are archived in the geologic record by the resulting pockmarks at the sea-floor. Venting is widely interpreted to occur via hydraulic fracturing, which requires near-lithostatic pore pressures for initiation. One common driver for these extreme pressures is horizontal tectonic compression, which pressurises the entire sedimentary column over a wide region. Fluid expulsion leads to a sudden, local relief of this pressure, which then gradually recharges through continued compression, leading to episodic venting. Pressure recharge will also occur through pressure diffusion from neighbouring regions that remain pressurised, but the combined role of compression and pressure diffusion in episodic venting has not previously been considered. Here, we develop a novel poroelastic model for episodic, compression-driven venting. We show that compression and pressure diffusion together set the resulting venting period. We derive a simple analytical expression for this venting period, demonstrating that pressure diffusion can significantly reduce the venting period associated with a given rate of compression. Our expression allows this rate of compression to be inferred from observations of episodic venting. We conclude that pressure diffusion is a major contributor to episodic fluid venting in mudstone-dominated basins.

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