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Layer rotation around vertical fault overlap zones: observations from seismic data, field examples, and physical experiments

机译:围绕垂直断层重叠带的层旋转:来自地震数据,现场实例和物理实验的观测

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摘要

Vertically overlapping fault segments are common structures in faulted hydrocarbon reservoirs. Experimental work and field observations show a close relationship between the rotation of layers in the region of overlap, the type of overlap (restraining vs. releasing) and fault curvature. In general, releasing overlap zones (where the normal fault steps upward into the hanging-wall) show normal rotation or drag, thus decreasing the effective throw on the fault. In contrast, restraining overlaps tend to develop reverse rotation in the overlap zone, particularly if the normal fault tips curve toward each other. Releasing overlap zones seem to be more common than the restraining zones, and the overlaps tend to form in shaly layers between thicker sandstones. Narrow overlaps of this type typically develop zones of drag or shale smear that could seal or reduce communication across the adjacent sandstone layers. Hence, overlap ones may significantly influence communication in a reservoir, depending on the fault arrangement, geometry, and lithological properties. Seismic interpreters and structural geologists should pay particular attention to layer rotation to identify vertical overlap structures and to evaluate their influence on reservoir performance.
机译:垂直重叠的断层段是断层油气藏中的常见构造。实验工作和现场观察表明,重叠区域中各层的旋转,重叠类型(约束与释放)和断层曲率之间存在密切关系。通常,释放重叠区域(正常断层向上伸入悬壁的区域)显示出正常旋转或阻力,从而降低了对断层的有效投掷。相反,约束重叠往往会在重叠区域中产生反向旋转,特别是在正常断层尖端相互弯曲的情况下。释放重叠区似乎比限制区更普遍,并且重叠往往在较厚的砂岩之间的页岩层中形成。这种狭窄的重叠通常会形成拖曳或页岩涂片区域,这些区域可能会密封或减少相邻砂岩层之间的连通。因此,取决于断层的布置,几何形状和岩性,重叠部分可能会显着影响储层中的连通性。地震解释员和结构地质学家应特别注意地层旋转,以识别垂直重叠结构并评估其对储层性能的影响。

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