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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Vertical-axis rotation of a foreland fold and implications for orogenic curvature: an example from the Southern Pyrenees, Spain
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Vertical-axis rotation of a foreland fold and implications for orogenic curvature: an example from the Southern Pyrenees, Spain

机译:前陆褶皱的垂直轴旋转及其对造山曲率的影响:西班牙南部比利牛斯山脉的一个例子

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In curved orogenic systems where thrusting and vertical-axis rotations have been documented, it is possible to determine whether the curvature is secondary or progressive based on the timing between the two motions. The South-Central Unit of the Southern Pyrenees provides an opportunity to investigate relationships between thrusting, folding, and vertical-axis rotation because of unusual preservation of Tertiary synorogenic sedimentary strata. Paleomagnetic samples were collected from 51 sites in the upper Eocene–lower Oligocene continental synorogenic strata of the Oliana anticline, a foreland fold along the eastern margin of the South-Central Unit. Site-mean characteristic remanent magnetization directions were determined from 17 sites through thermal demagnetization and principal component analysis. In addition, 72 samples were collected from 39 stratigraphic levels spanning the Upper Eocene marine marls and treated with thermal and alternating field demagnetization techniques. Of these, 53 samples yielded demagnetization trajectories that further constrained the rotation. Comparison of the observed mean paleomagnetic direction from the Oliana anticline with the expected direction indicates a counterclockwise rotation (R±△R) of 20.3 °±10.9 °. Based on the stratigraphic horizons recording the rotation, the age of the rotation is younger than ~34 Ma (after deposition of Unit 3). Data covering the Upper Eocene–Lower Oligocene time interval indicate a similar magnitude of rotation, suggesting that late stage emplacement of thrust sheets hinterlandward of the Oliana anticline controlled the rotation, with rotation accommodated along regionally extensive evaporites. The well-constrained timing relationships between thrusting and rotation and the regional and local transport directions, suggest that the South-Central Unit is a progressive curve that formed through distributed shortening.
机译:在记录了推力和垂直轴旋转的弯曲造山系统中,可以基于两个运动之间的时间确定曲率是次要的还是渐进的。比利牛斯山脉南部的中南部单元提供了一个研究推力,褶皱和垂直轴旋转之间关系的机会,这是由于第三系共生沉积地层的异常保存所致。古磁性样品是从Oliana背斜的上新世-渐新世-下渐新世大陆共生地层的51个地点收集的,该地层是沿中南单元东缘的前陆褶皱。通过热退磁和主成分分析,从17个位置确定了位置平均特征剩余磁化方向。另外,从上新世上段海洋泥石的39个地层中收集了72个样品,并用热场和交变场消磁技术进行了处理。其中,有53个样本产生了退磁轨迹,进一步限制了旋转。从Oliana背斜观测到的平均古磁方向与预期方向的比较表明,逆时针旋转(R±△R)为20.3°±10.9°。根据记录旋转的地层视野,旋转年龄小于〜34 Ma(3号单元沉积后)。涵盖上始新世-下渐新世时间间隔的数据显示出相似的旋转幅度,表明Oliana背斜向内腹的逆冲逆冲晚期位移控制了旋转,并沿区域广泛的蒸发岩提供了旋转。推力和旋转与区域和本地运输方向之间的时间关系受到严格约束,这表明中南单元是通过分布缩短而形成的渐进曲线。

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