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Practical and efficient three-dimensional structural restoration using an adaptation of the GeoChron model

机译:使用地质译模型的适应性和高效的三维结构恢复

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摘要

We document a novel approach to balanced three-dimensional structural restoration based on an adaptation of the GeoChron model. Conventionally, the GeoChron model defines a transformation of a geological model to a flattened space (U-V-T), with paleogeographic coordinates defined by the horizontal axes (U-V) and geologic time on the vertical axis (T). In our new balanced structural restoration scheme, the complete stratigraphy is restored using a transformation constrained only by the datum horizon. Scaling the vertical "T" axis to depth in a manner that preserves volume or layer thickness results in a geometric restoration that approximately minimizes strain globally. This restoration provides a geometrically plausible representation of the geologic structure at the time when the datum horizon was deposited. Restoration is independent of mechanical rock properties and is thus most applicable to regions in which mechanical rock properties are approximately homogeneous. Restoration kinematics may be constrained by growth strata if present.
机译:我们根据地质译模型的适应记录了一种基于结构的平衡三维结构恢复的新方法。传统上,地质译模型将地质模型(U-V-T)的转换定义,具有由水平轴(U-V)(U-V)和垂直轴(T)上的地质时间限定的古地理坐标。在我们的新平衡结构恢复方案中,使用仅由DATUM Horizo​​ n仅受约束的转型来恢复完整的地层。以保留体积或层厚度的方式缩放垂直的“T”轴深度,这些方式导致几何恢复,即大约最小化全球应变。该恢复提供了在沉积基准地平线时的地质结构的几何合理表示。恢复与机械岩石特性无关,因此最适用于机械岩石性质大约均匀的区域。如果存在,恢复运动学可能受生长层的约束。

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