首页> 外文期刊>Journal of Petroleum Geology >The timing of cementation in the Rotliegend Sandstones of the Southern North Sea: A petrological and fluid inclusion study of cements
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The timing of cementation in the Rotliegend Sandstones of the Southern North Sea: A petrological and fluid inclusion study of cements

机译:北海南部Rotliegend砂岩中胶结作用的时机:水泥的岩石学和流体包裹体研究

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摘要

We report here on fracture and pore-filling cements in the Rotliegend Sandstones of the Sole Pit area, UK Southern North Sea. Standard thin-section petrography and scanning electron microscopy have been complemented by fluid inclusion microthermometry. The main objectives of this gaper are to establish the stratigraphy of the sandstones' cements and to describe the cements' characteristics. In addition, the combined use of petrography and fluid inclusion microthermometry is used to define the timing of cementation and gas migration in the Southern North Sea. The geological history of the Sole Pit area is similar to that of other parts of the Southern North Sea. A period of aeolian deposition resulting in the Upper Permian Rotliegend Sandstones was ended by the Zechstein marine transgression Rapid subsidence followed until Cretaceous times, when a phase of uplift affected the Sole Pit area as well as, for example, the Broad Fourteens Basin. This uplift continued through the Cretaceous and,following a minor phase of subsidence, uplift again took place in the Late Cretaceous and into the Tertiary. When plotted on burial-thermal history diagrams, the fluid-inclusion and petrographic results show that quartz cement precipitated over a range of burial depths. Quartz mineralisation was, however, more common at deep burial levels and also during the uplift period in the Sole Pit area, which caused extensive fracturing of the Rotliegend Sandstones. Dolomite precipitation occurred during deep burial diagenesis and ceased largely with the onset of fracturing. Sulphates; (anhydrite and barite) were mainly precipitated during the inversion phase in the Sole Pit area. As both the anhydrite fluid inclusions, and possibly also the quartz fluid inclusions within some of these cements contain hydrocarbon gases, the migration of gas took place during the inversion period using the fractures as migration pathways. [References: 28]
机译:我们在这里报告英国南部北海唯一坑地区Rotliegend砂岩中的裂缝和孔隙填充水泥。标准的薄层岩石学和扫描电子显微镜已通过流体包裹体温计得到了补充。这种裂隙器的主要目的是建立砂岩水泥的地层并描述水泥的特性。此外,结合使用岩相学和流体包裹体热计量法来确定北海南部的胶结作用和天然气运移的时间。唯一坑地区的地质历史与南北海其他地区的地质历史相似。 Zechstein的海侵活动结束了由上二叠纪Rotliegend砂岩引起的一段风沙沉积时期,随后迅速沉降,直至白垩纪,那时隆起阶段影响了单一坑地区以及例如十四大盆地。这种隆升一直持续到白垩纪,随后经历了很小的沉降阶段,随后又在白垩纪晚期和第三纪隆升。当在埋藏热史图上作图时,流体包裹体和岩石学结果表明,石英水泥在一定的埋藏深度范围内沉淀。然而,石英的矿化在深埋层以及隆起时期在底部坑地区更为普遍,这导致了罗特根根砂岩的广泛破裂。白云岩沉淀发生在深埋成岩作用中,并随着破裂的发生而大体上停止了。硫酸盐; (硬石膏和重晶石)主要是在反转阶段在单一坑区中沉淀的。由于某些水泥中的无水石膏夹杂物,也可能包括石英流体夹杂物,均含有烃类气体,因此在反演期间,以裂缝为运移途径进行了天然气运移。 [参考:28]

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