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首页> 外文期刊>International Journal of Earth Sciences >Sealing of fluid pathways in overpressure cells: a case study from the Buntsandstein in the Lower Saxony Basin (NW Germany)
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Sealing of fluid pathways in overpressure cells: a case study from the Buntsandstein in the Lower Saxony Basin (NW Germany)

机译:超压单元中流体通道的密封:以下萨克森盆地的邦兹坦斯坦为例(德国西北)

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摘要

We studied veins in the Triassic Buntsandstein of the Lower Saxony Basin (NW Germany) with the aim of quantifying the evolution of in-situ stress, fluids and material transport. Different generations of veins are observed. The first generation formed in weakly consolidated rocks without a significant increase in fracture permeability and was filled syntectonically with fibrous calcite and blocky to elongate-blocky quartz. The stable isotopic signature (δ~(18)O and δ~(13)C) indicates that the calcite veins precipitated from connate water at temperatures of 55-122℃. The second vein generation was syntectonically filled with blocky anhydrite, which grew in open fractures. Fluid inclusions indicate that the anhydrite veins precipitated at a minimum temperature of 150℃ from hypersaline brines. Based on δ~(34)S measurements, the source of the sulphate was found in the underlying Zechstein evaporites. The macro- and mi-crostructures indicate that all veins were formed during subsidence and that the anhydrite veins were formed under conditions of overpressure, generated by inflation rather than non-equilibrium compaction. The large amount of fluids which are formed by the dehydrating gypsum in the underlying Zechstein and are released into the Buntsandstein during progressive burial form a likely source of overpressures and the anhydrite forming fluids.
机译:我们研究了下萨克森盆地(德国西北部)的三叠纪Buntsandstein的静脉,目的是量化原位应力,流体和物质传输的演化。观察到不同世代的静脉。第一代形成于弱固结岩石中,而裂缝渗透率没有显着增加,并被纤维状方解石和块状至长块状石英共晶填充。稳定的同位素特征(δ〜(18)O和δ〜(13)C)表明方解石脉在55-122℃的温度下从天然水中析出。第二代脉状构造由块状硬石膏(其在裸露的裂缝中生长)同相填充。流体包裹体表明硬石膏脉在最低温度150℃时从高盐盐水中沉淀出来。根据δ〜(34)S的测量值,在下层的Zechstein蒸发岩中发现了硫酸根。宏观和微观结构表明,在沉降过程中形成了所有静脉,而硬石膏脉冲是在超压条件下形成的,该条件是由膨胀而不是非平衡压实产生的。由下面的Zechstein中的脱水石膏形成的大量流体,并在逐步埋葬期间释放到Buntsandstein中,这可能是过压和硬石膏形成流体的来源。

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