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Micromorphological evidence for subglacial multiphase sedimentation and deformation during overpressurized fluid flow associated with hydrofracturing

机译:与水力压裂相关的超压流体流动期间冰下多相沉降和变形的微观形态证据

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摘要

Hydrofracture systems are being increasingly recognized within subglacial to ice-marginal settings and represent a visible expression of the passage of pressurized meltwater through these glacial environments. Such structures provide a clear record of the fluctuating hydrostatic pressure and of the resulting brittle fracturing of the host sediment/bedrock and the pene-contemporaneous liquefaction and introduction of sediment-fill. A detailed macro- and microstructural study of a hydrofracture system cutting Devonian sandstone bedrock exposed at the Meads of St John, near Inverness (NE Scotland), has revealed that this complex multiphase system was active over a prolonged period and accommodated several phases of fluid flow. The main conduits that fed the hydrofracture system are located along bedding within the sandstone, with the site of the wider, steeply inclined to subvertical, transgressive linking sections being controlled by the contemporaneous development of high-angle fractures and normal faults, the latter occurring in response to localized extension within the bedrock. A comparison with published engineering hydraulic fracturing data indicates that the various stages of sediment-fill deposited during a flow event can be directly related to the fluctuation in overpressure during hydrofracturing. A model is proposed linking the evolution of this hydrofracture system to the retreat of the overlying Findhorn glacier. The results of this study also indicate that the development and repeated reactivation of subglacial hydrofracture systems can have a dramatic effect on the permeability of the bed, influencing the potential for overpressure build-up within the subglacial hydrogeological system, and facilitating the migration of meltwater beneath glaciers and ice sheets
机译:水力压裂系统在冰缘以下至冰缘环境中得到了越来越多的认可,并代表了加压的融水通过这些冰川环境的可见表现。这样的结构清楚地记录了静水压力的波动,以及主体沉积物/基岩的脆性破裂,笔形同时液化以及沉积物填充的引入。对在因弗内斯(苏格兰新近)附近圣约翰米德斯裸露的泥盆纪砂岩基岩进行水力压裂系统的详细宏观和微观结构研究表明,这种复杂的多相系统长期处于活动状态,并适应了流体的多个阶段。输注水力压裂系统的主要管道沿着砂岩内的顺层布置,较宽的,陡峭的,倾斜的,垂直于海侵的连接段的位置受大角度裂缝和正断层的同时发展控制,后者发生在对基岩内局部扩展的响应。与已发布的工程水力压裂数据的比较表明,在流动事件期间沉积的沉积物充填的各个阶段可能与水力压裂过程中的超压波动直接相关。提出了一个模型,将这种水力压裂系统的演化与上覆的芬德霍恩冰川的退缩联系起来。这项研究的结果还表明,冰下水力压裂系统的开发和反复活化可以对床层的渗透性产生显着影响,影响冰下水文地质系统内超压积累的潜力,并促进熔融水在地下的迁移。冰川和冰盖

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