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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 >Structural evolution in accretionary prism toe revealed by magnetic fabric analysis from IODP NanTroSEIZE Expedition 316
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Structural evolution in accretionary prism toe revealed by magnetic fabric analysis from IODP NanTroSEIZE Expedition 316

机译:IODP NanTroSEIZE Expedition 316的磁性织物分析揭示了增生棱镜趾的结构演变

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This paper presents magnetic fabric analysis to examine the internal structure of the accretionary prism toe in the Nankai Trough, off the east coast of Japan. Two sites (C0006 and C0007) drilled during Integrated Ocean Drilling Program (IODP) Expedition 316 penetrated the sediment section, including intra wedge thrusts and the frontal thrust. Anisotropy of magnetic susceptibility (AMS) measurements provides insight into recorded strain during sedimentary and tectonic processes. Results from the upper part of the wedge show sedimentary acquired compaction fabric in general. In the lower part, AMS fabrics occasionally rotate almost ninety degrees and suggest horizontal compression. In contrast, magnetic fabrics did not show any correspondence to the thrusts or minor normal faults, which implies that those faults develop with concentrated shear deformation without disturbing surrounding sediments. Two adjacent drilling sites and dense sampling demonstrated clearly the change in strain field which is reported by previous studies. Based on these results, we propose a model of structural evolution at the toe of the prism. Underthrusting sediments induce horizontal stress in the lower part of the wedge, which reduces the effective stress and forms a high pore pressure anomaly and zones of fracturing. The frontal thrust is bent geometrically and terminates its activity in response to an increase of friction that triggers initiation of the next-generation frontal thrust. The upper part of the wedge tilts accordingly, resulting in an unstable slope. (c) 2010 Elsevier B.V. All rights reserved.
机译:本文介绍了磁性织物分析,以研究日本东海岸南开海槽中增生棱柱脚趾的内部结构。在综合海洋钻探计划(IODP)远征316期间钻探的两个位置(C0006和C0007)穿透了沉积物部分,包括内部楔形推力和正面推力。磁化率(AMS)测量的各向异性可以帮助您深入了解沉积和构造过程中记录的应变。楔形上部的结果总体上显示出沉积获得的压实织物。在下部,AMS织物偶尔会旋转近90度,并建议水平压缩。相比之下,磁性织物与推力或较小的法向断层没有任何对应关系,这意味着这些断层在集中剪切变形的情况下发展而不会干扰周围的沉积物。先前的研究报道,两个相邻的钻探地点和密集的采样清楚地表明了应变场的变化。基于这些结果,我们提出了一个在棱镜的脚趾处的结构演化模型。冲力不足的沉积物在楔形下部产生水平应力,这降低了有效应力并形成了高孔隙压力异常和压裂区。正面推力会几何弯曲,并响应于引发下一代正面推力的摩擦力增加而终止其活动。楔形的上部相应地倾斜,从而导致不稳定的倾斜度。 (c)2010 Elsevier B.V.保留所有权利。

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