首页> 外文期刊>International Journal of Earth Sciences >Control of Cambrian evaporites on fracturing in fault-related anticlines in the Zagros fold-and-thrust belt
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Control of Cambrian evaporites on fracturing in fault-related anticlines in the Zagros fold-and-thrust belt

机译:寒武纪蒸发岩对扎格罗斯褶皱冲断带断裂相关背斜断裂的控制

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Orientation and distribution of fractures in the Oligocene-Early Miocene Asmari Formation (a major reservoir rock of the Zagros petroleum system) were investigated in two anticlines of the Zagros fold-and-thrust belt. The Sim and Kuh-e-Asmari anticlines developed in the areas of the Zagros characterized by the occurrence and absence of Cambrian evaporites at the bottom of the stratigraphic pile, respectively. The aim was to outline major differences in terms of fracture spacing and saturation. Organic matter maturity and clay minerals-based geothermometers suggest that the depth of deformation for the top of the Asmari Formation in the Kuh-e-Asmari anticline was in the range of 1.5-2.7 km assuming a geo-thermal gradient of 22.5 ℃/km. The Asmari Formation in the Sim anticline probably experienced a slightly deeper sedimentary burial (maximum 3 km) with a geothermal gradient of 20 ℃/km. The spacing of fractures is generally 2-3 times larger (i.e., strain accommodated by fracturing is smaller) in the Sim anticline than in the Kuh-e-Asmari anticline. This is consistent with regional geological studies, analogue, and numerical models that suggest that thrust faults geometry and related folds are markedly different in the absence or presence of a weak decollement (evaporites). The larger spacing in the Sim anticline is also consistent with higher temperature predicted for the Asmari Formation in this area. By contrast, the orientation of fractures with respect to the fold axes is the same in both anticlines. The fracture systems are rather immature in both anticlines. The amount and density of fractures in the twofolds are controlled by regional (occurrence/absence of salt and probably different burial), rather than local features (fold geometry).
机译:在Zagros褶皱-冲断带的两条背斜上研究了渐新世-早中新世Asmari组(Zagros石油系统的主要储集岩)中裂缝的方向和分布。 Sim和Kuh-e-Asmari背斜发育在Zagros地区,其特征是地层桩底部分别形成和不存在寒武纪蒸发岩。目的是概述裂缝间距和饱和度方面的主要差异。有机物成熟度和基于粘土矿物的地热仪表明,假设地热梯度为22.5℃/ km,Kuh-e-Asmari背斜的Asmari组顶部的变形深度在1.5-2.7 km范围内。 Sim背斜的Asmari组可能经历了更深的沉积埋藏(最大3 km),地热梯度为20℃/ km。 Sim背斜中的裂缝间距通常比Kuh-e-Asmari背斜中的裂缝间距大2-3倍(即压裂所适应的应变较小)。这与区域地质研究,模拟和数值模型相吻合,这些模型表明,在不存在或存在弱弯折(蒸发岩)的情况下,逆冲断层的几何形状和相关褶皱明显不同。 Sim背斜线的较大间距也与该地区阿斯马里组预测的较高温度一致。相反,在两条背斜线中,裂缝相对于褶皱轴的方向是相同的。两条背斜的断裂系统都还不成熟。双重裂缝的数量和密度是由区域(是否存在盐和可能不同的埋葬)控制的,而不是局部特征(褶皱的几何形状)控制的。

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