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首页> 外文期刊>Journal of the Geological Society >Sandstone-hosted concretions record evidence for syn-lithification seismicity, cavitation processes, and Palaeocene rapid burial of Lower Cretaceous deepmarine sandstones (Outer Moray Firth, UK North Sea)
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Sandstone-hosted concretions record evidence for syn-lithification seismicity, cavitation processes, and Palaeocene rapid burial of Lower Cretaceous deepmarine sandstones (Outer Moray Firth, UK North Sea)

机译:砂岩主持的凝结物记录了下白垩统深海砂岩(英国北海莫里峡湾)的同化石化地震活动性,空化过程和古新世快速埋藏的证据。

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摘要

Syn- and post-lithification cemented fractures are abundant in concretions formed during shallow burial of Hauterivian turbidites ill the Outer Moray Firth. Early fractures are irregular, bifurcating, and contain entrained sand grains. They are confined to the concretion bodies, but commonly splay into narrower fracture swarms at the margins. Multiple, cross-cutting fills of calcite microspar have similar isotopic composition to adjacent concretionary cements, suggesting that rupture and cementation cycles occurred as host concretions lithified. Expulsion of cementing pore fluids from the fractures produced cement protrusions at concretion margins. A hydraulic fracture mechanism resulting from localized permeability heterogeneity and episodic seismic activity is proposed. Rapid seismic loading created high pore fluid pressures for fracture dilation in lithifying concretions and, through cavitation and CO2 degassing, a trigger for rapid homogeneous nucleation of calcite. Many of the early structures were subsequently reactivated as brittle tensile fractures, and host a variety of mesogenetic cements. Reactivation probably occurred in response to stress amplification during rapid Palaeocene burial. By this time lithification of the concretions had dramatically changed their rheology and failure style. Minor permeability remained in the concretion cements adjacent to reactivated fractures, permitting invasion of intercrystalline voids by late diagenetic fluids.
机译:在海特里夫(Hautivian)浊积岩浅埋至海鳗外层期间,形成的凝结物中充斥着同化和后石化胶结裂缝。早期的裂缝是不规则的,分叉的,并且包含夹带的沙粒。它们被限制在固结体中,但通常在边缘扩展成狭窄的裂缝群。方解石微晶石的多个横切填充物与相邻的凝结胶结物具有相似的同位素组成,这表明随着主体凝结物的胶结发生了破裂和胶结循环。从裂缝中驱出胶结孔隙液会在固结边际产生水泥凸起。提出了由局部渗透率非均质性和偶发地震活动引起的水力压裂机理。快速的地震载荷产生了高的孔隙流体压力,从而使岩化混凝土中的裂缝膨胀,并且通过空化和CO2脱气,触发了方解石快速均匀成核。随后,许多早期结构被重新激活为脆性拉伸断裂,并容纳了各种成岩水泥。重新激活可能是响应于古新世快速埋葬期间的应力放大而发生的。到了这个时候,胶结物的石化极大地改变了它们的流变性和破坏方式。在重新活化的裂缝附近,固结水泥中残留的渗透率较小,从而允许后期成岩流体侵入晶间空隙。

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