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Balancing and restoration of piercement structures: geologic insights from 3D kinematic models

机译:穿孔结构的平衡与修复:3D运动学模型的地质学见解

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Restoration of cross-sections and map surfaces of volume-balanced 3D flexural-slip models are presented to provide insight into the structural interpretation and validation of highly 3D structures like faulted salt domes. 2D restoration results in apparently unbalanced cross-sections. Most sections show apparent thickening on dome flanks because the section line is oblique to the dip, except the radial cross-section that bisects a flank horst or graben along the slip direction. A section is corrected by adjusting the thickness according to the true dip as determined in map view. A cross-section from the flank of a 3D piercement structure is best restored by flexural-slip unfolding between pin lines placed at each edge of the section. Parallel flexural-slip unfolding is a reasonably good and practical restoration method for 3D piercement structures. Small gaps nearly always exist along every fault trace restored in the model. This systemically distributed small inconsistency does not, however, indicate a problem in the interpretation. These small gaps are due to the use of the same unfolding direction for every restored block. Insights from model dome restoration are applied to test the interpretation of natural salt dome examples from eastern Texas and northern Germany.
机译:提出了体积平衡的3D弯曲滑动模型的横截面和地图表面的还原,以提供对诸如断层穹顶之类的高度3D结构的结构解释和验证的见识。 2D修复导致横截面明显不平衡。大多数截面显示出穹顶侧面明显的增厚,因为截面线相对于倾角倾斜,除了将横切面一分为二或沿滑移方向抓紧的径向横截面。通过根据地图视图中确定的真实倾角调整厚度来校正截面。 3D穿孔结构侧面的横截面最好通过放置在截面每个边缘的销钉线之间的挠曲滑动展开来恢复。平行弯曲滑动展开是3D穿孔结构的一种相当不错且实用的修复方法。在模型中恢复的每个故障迹线上几乎总是存在小间隙。但是,这种系统分布的小不一致并不表示解释存在问题。这些小间隙是由于对每个恢复的块使用相同的展开方向。模型圆顶修复的见解可用于测试德克萨斯州东部和德国北部的天然盐圆顶示例的解释。

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