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Structurally controlled development of a sulfuric hypogene karst system in a fold-and-thrust belt (Majella Massif, Italy)

机译:在折叠和推动带(意大利Majella MaseIf)的硫酸低原岩岩溶系统的结构控制开发

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We documented the deformation in the southeastern domain of the Majella anticline (Central Apennines, Italy) to highlight timing and structural characteristics of different fracture sets affecting the outcropping Cretaceous-Miocene ramp carbonates. An isolated and inactive hypogene karst system produced by sulfuric acid (Cavallone-Bove cave system) was studied following a multidisciplinary approach. Our findings suggest that deep-rooted, sub-vertical strike-slip fault zones reaching the H2S source rocks were the main vehicle for ascending acidic fluid flow. Linkage and intersection of these faults by splays in extensional stepovers and pre-orogenic normal faults permitted ascending fluids to reach multiple recharge points (feeders) near the paleo water table. In proximity to the oxygenated groundwater, where H2SO4 was produced, lateral dissolution focused along bedding planes and zones of localized deformation (fracture clusters) characterizing the hinge of the anticline. We conclude that structural position in the anticline and large-offset, vertically extended strike-slip fault zones control the localization of efficient permeability pathways and represent first order controlling features for fluid flow in the fold-and-thrust belt. This study provides insights into the understanding of time-space evolution, geometry, and pattern of sulfuric hypogene karst systems in folded carbonates, whose prediction is critical for fractured and karstified reservoirs.
机译:我们记录了Majella antialline(意大利)的东南部域中的变形,以突出不同骨折组的时序和结构特征,影响覆盖白垩纪 - 中丙烯斜坡碳酸盐。通过多学科方法研究了硫酸(Cavallone-Bove Cave System)产生的分离和无活性的氧代岩系。我们的研究结果表明,到达H2S烃源岩的深根,副垂直击球故障区是用于上升酸性流体流动的主载体。这些故障在扩展落叶液中的展开和交叉点的联动和交集允许升液升降液在古水位靠近的多个充电点(馈线)。邻近含氧地下水,其中产生H2SO4,横向溶解沿床上用品和局部变形(骨折簇)的区域,其特征在于嵌入线的铰链。我们得出结论,垂直延伸的滑动故障区的基础伸展途径的结构位置控制有效渗透途径的定位,并且代表折叠和推力带中的流体流动的第一阶控制特征。本研究提供了对折叠碳酸盐中的时间空间演化,几何和硫代karst系统的理解的见解,其预测对于裂缝和岩溶储存器至关重要。

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