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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Major variations in vitrinite reflectance and consolidation characteristics within a post-middle Miocene forearc basin, central Japan: A geodynamical implication for basin evolution
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Major variations in vitrinite reflectance and consolidation characteristics within a post-middle Miocene forearc basin, central Japan: A geodynamical implication for basin evolution

机译:日本中部中部内部内蒙古盆地中玻毛岩反射率和固结特征的主要变化:盆地演化的地磁含义

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Abstract Forearc basin sediments near the ocean-ward margin preserve tectonic information related to plate subduction. The post-middle Miocene Boso forearc basin, central Japan, records major differences in structure, paleo-maximum temperature, and consolidation state between below (Miura Group) and above (Kazusa Group) the Kurotaki Unconformity, which formed at ca. 3Ma. Many fault systems below the unconformity are characterized by a disaggregation-band-like inner fabric that apparently formed soon after sedimentation, whereas there are few of this type of fault system above the unconformity. Vitrinite reflectance values (Ro) are 0.38%–0.44% and 0.22%–0.25% below and above the unconformity, respectively. The consolidation yield stress (p c) in the Miura Group (23.7MPa in the Anno Formation; 31.0MPa in the Amatsu Formation) is much greater than that in the Kazusa Group (7.5, 7.6 and 9.6MPa in the Umegase, Ohtadai and Kiwada formations, respectively). These clear differences in vitrinite reflectance and consolidation characteristics above and below the unconformity are attributed to a forearc basin evolution, which resulted in the Miura Group being geothermally matured, tectonically compacted, uplifted, and eroded (500m in maximum) before sedimentation of the Kazusa Group. The forearc basin, especially near the trench-slope break, records structural and physical properties reflecting the plate-tectonic environment and the development of the trench-slope.
机译:<![cdata [ 抽象 Forearc Basin沉积物附近的海洋区保证金保存与板俯冲相关的构造信息。日本中部中部内部内科博世前院盆地盆地在下面(MIURA组)及以上(Kazusa Group)之间的结构,古高温和整合状态进行了重大差异,在CA. 3 MA。不整合下方的许多故障系统的特征在于一种显然在沉降之后很快形成的分列带状的内织物,而这类故障系统中少于非整合性。 Vitriinite反射值(R O )分别为0.38%-0.44%和0.22%-0.25%,分别低于不整合性。 Miura组中的合并产量应力( P c )帖子(23.7 MPa在amatsu形成中)远大于Kazusa组(7.5,7.6和9.6 MPA在UMEGASE,OHTADAI和Kiwada Chormations中)。这些明显的vitriinite反射率和整合特性的差异归因于不整合性的植物盆地演化,导致Miura组是地热成熟的,根本压实,提升和侵蚀(500 m最大值。前臂盆,特别是在沟槽斜率断裂附近,记录反映板构造环境的结构和物理性质和沟槽斜率的发展。

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