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Analogue Modelling of Shah Structure in Abu Dhabi; Mode and Structural Evolution

机译:阿布扎比的Shah结构的模拟建模;模式和结构演变

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Three-dimensional seismic data have been used to construct a series of scaled analogue models simulating the structural evolution of the Shah hydrocarbon Field. Models consisted of a set of layers of loose sand on two basal plates whose contact simulated a basement fault. Depositional history of the Shah structure was simulated in the model by producing syn-kinematic deposition and erosion. Deformation of the model was achieved by moving one of the basement plates in a way that it initiated an oblique slip along the basement fault. This oblique movement induced both a strike slip movement in and shortening of the cover sand layers, which resulted in formation of an open anticline (box fold) along the strike of the fault similar to the Shah structure. The 3D seismic mapping of the Shah hydrocarbon Field reveals carbonates dominating lithological units from the Pre Khuff Fm (Permian) to the Dammam Fm (Eocene). A major unconformity in the stratigraphy indicates uplift, exhumation and erosion at Simsima level (U. Cretaceous) with onlapping of the younger units (Eocene-Miocene Formations). The Shah structure is an open SW-NE striking anticline, which changes symmetry along strike; asymmetric in the SW, more symmetric in the middle, and asymmetric open anticline in the NE. Model results indicate that the structure is a basement related cover anticline formed due to the oblique movement along a basement fault, which was reactivated during the obduction of Semail Ophiolite and later collision of Arabia with Iranian plate. These results show that this anticline formed without the need for a shortening component perpendicular to the strike of the structure. An oblique slip along a basement fault, with a relatively small degree of shortening could equally well result in the formation of such open and low-amplitude anticline.
机译:已经使用三维地震数据来构建模拟Shah烃场的结构演变的一系列缩放模拟模型。模型由一组宽松沙子上的一组宽松沙子,其接触模拟了地下室故障。通过产生Syn-kinemematic沉积和侵蚀,在模型中模拟了Shah结构的沉积历史。通过以沿着地下室故障引发倾斜滑动的方式移动一个基板来实现模型的变形。该倾斜运动诱导盖子砂层的罢工滑移运动和缩短,这导致沿着类似于Shah结构的故障的击打形成开放的抗线板(盒子折叠)。 Shah烃场的3D地震映射揭示了从Pre Kuff FM(二叠钟)到Dammam FM(eocene)的碳酸碳酸盐。地层中的一个主要不整合表明司机级别(白垩纪)的隆起,挖掘和侵蚀,随着较年轻的单位(何世肾上腺腺目)。 Shah结构是一个开放的SW-NE打击斜线,这沿着罢工变化了对称性;在SW中的不对称,中间在中间更对称,NE中的不对称打开边界。模型结果表明,由于沿着地下室故障的倾斜运动,该结构是一种形成的地下室相关盖子,其被沿着地下室故障进行重新激活,在糖尿杆子举行康马尔矿石和随后与伊朗板块的碰撞中被重新激活。这些结果表明,这种反向衬线在不需要垂直于结构击中的缩短部件的情况下形成。沿着地下室故障的斜滑动,具有相对较小程度的缩短可能同样很好地导致形成这种开放和低幅度的抗线。

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