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A computed tomography approach for understanding 3D deformation patterns in complex folds

机译:一种用于了解复杂褶皱中3D变形模式的计算机断层扫描方法

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摘要

Analog models are an important tool for understanding complexly folded and faulted geological structures. In this paper, we propose the use of X-ray computed tomography to accurately reconstruct the geometry of analog models using an orthogonal reference system and to completely characterize deformation patterns within the modeled structure in 3D. The rheology and radiological contrast of various different materials have been studied showing that EVA sheets are a good choice to model buckling layers. After considering various possibilities to define the reference system, we opted to screen-print two orthogonal sets of parallel lines on the surfaces using minium (lead tetroxide). The model was then built with gOcad using a series of CT slices that can be closely spaced. This kind of model allows us to reconstruct the volume distribution of strain ellipsoids and can be very accurate and useful to ascertain the orientation of folded lineations in complex structures as well as to characterize the expected deformation on the surfaces. We have built a simple analog model inspired in the Balzes Anticline (located in the External Sierras, Southern Pyrenees) to illustrate the potential of the technique and to analyze the deformation patterns of this complex curved fold that has accommodated significant magnitudes of vertical axis rotation during its formation.
机译:模拟模型是了解复杂折叠和断层地质结构的重要工具。在本文中,我们建议使用X射线计算机断层摄影术,以使用正交参考系统准确地重建模拟模型的几何形状,并完全表征3D建模结构内的变形模式。研究了各种不同材料的流变和放射学对比,表明EVA板是模拟屈曲层的理想选择。在考虑了定义参考系统的各种可能性之后,我们选择使用最小(四氧化铅)在表面上丝网印刷两组正交的平行线。然后,使用一系列紧密间隔的CT切片,使用gOcad构建模型。这种模型使我们能够重建应变椭球的体积分布,并且对于确定复杂结构中折叠线的方向以及表征表面上的预期变形非常准确和有用。我们建立了一个受Balzes背斜启发的简单模拟模型(位于南比利牛斯山的外部山脉),以说明该技术的潜力并分析这种复杂的弯曲褶皱的变形模式,该褶皱在较大的垂直轴旋转过程中已适应它的形成。

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