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首页> 外文期刊>AAPG Bulletin >Fracture characterization in sigmoidal folds: Insights from the Siah Kuh anticline, Zagros, Iran
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Fracture characterization in sigmoidal folds: Insights from the Siah Kuh anticline, Zagros, Iran

机译:Sigmoidal折叠的骨折特性:Siah Kuh Italidine,Zagros,Iran的见解

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摘要

Fieldwork and remote-sensing data from the Siah Kuh anticline, simply folded belt, Zagros, Iran indicate that specific structures and fracture systems formed during the development of its sigmoidal shape, and that conceptual fracture models developed for cylindrical folds are inadequate for the correct evaluation and development of hydrocarbon accumulations in this type of anticline. The sigmoidal shape of the Siah Kuh anticline was achieved in the Pliocene due to vertical axis rotations of an already existing anticline. These rotations promoted the development of (1) two systems of normal faults in the outer arcs of the sigmoidal shape, (2) a low-angle thrust, and (3) the north-south Danan anticline in the inner arc of its easternmost bend. The passive margin to syn-folding structures, typically observed in nearby cylindrical and periclinal anticlines, predated the development of the sigmoidal shape and were passively rotated into the segments of the anticline. The sigmoid-related structures are spatially, geometrically, and kinematically related to the bends of the anticline trend, hence they can be predicted and modeled in the subsurface. The sigmoid-related normal faults have a great potential to preserve porosity and promote localized high flow rates or early water breakthrough. However, if they cut through thin reservoir and seal units, sigmoid-related thrusts and normal faults might compromise lateral reservoir continuity and seal integrity. The results of this study can help in reducing risks and uncertainty in the evaluation and development of business opportunities in secondary sigmoidal anticlines within the Zagros or any other fold-thrust belt.
机译:Siah Kuh Italidline的实地工作和遥感数据,简单地折叠皮带,ZAGROS,伊朗表明,在其齿状形状的发展过程中形成的特定结构和断裂系统,并且为圆柱形折叠开发的概念性断裂模型对于正确的评估不充分并在这种抗衬里的碳氢化合物积累的发展。由于已经存在的横向线的垂直轴旋转,在全烯烯中达到了SIAH KUH抗斜管线的矩形形状。这些旋转促进了(1)矩形形状的外弧中的两个正常故障系统的开发,(2)低角度推力,和(3)东部弯曲的内弧中的南北丹南斜线。在附近的圆柱形和垂直的边缘线中通常观察到的无源裕度,通常观察到,达到齿状形状的显影,并被动地旋转到反向衬线的区段中。与截止线趋势的弯曲的旋律相关的结构在空间,几何和运动学上,因此可以在地下预测和建模。与乙状相关的正常断层具有极大的潜力,可以保护孔隙度,促进局部高流量率或早水突破。但是,如果它们通过薄储液器和密封单元,则与乙状结嘴相关的推力和正常断层可能会损害横向储层连续性和密封完整性。本研究的结果可以帮助降低ZAGROS或任何其他折叠带中的次级六样突破口的商机的评估和开发的风险和不确定性。

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