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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >The Bouvet triple junction, 20 to 10 Ma, and extensive transtensional deformation adjacent to the Bouvet and Conrad transforms
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The Bouvet triple junction, 20 to 10 Ma, and extensive transtensional deformation adjacent to the Bouvet and Conrad transforms

机译:Bouvet三重结,20到10 Ma,在Bouvet和Conrad变换附近具有大的拉伸变形

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The Bouvet triple junction has been proposed to have evolved as a ridge-fault-fault (RFF) type between 20 and 10 Ma, connecting the southernmost Mid-Atlantic Ridge (SMAR) with the Bouvet and Conrad transforms, to the east and west, respectively. We surveyed immediately north of these two transforms with side-scan and multibeam sonars, on seafloor that would have originally been created at the SMAR close to its junction with the two transforms. The sonar data reveal that SMAR fabrics on the Bouvet and Conrad sides, when corrected for plate rotation, are parallel to each other, so they were most likely formed at the same spreading ridge and confirm that the triple junction was indeed RFF. Our second major result is that the SMAR fabrics are extensively crosscut by normal faults, over most of the 400 km surveyed along both transforms and most intensely north of the Bouvet transform. Growth faults and faults affecting the sediment surface in multichannel seismic images show that the deformation has been long-lived and is probably ongoing. Since the orientations of the crosscutting faults are similar to those of shear zone tension fractures, we interpret these areas to be transtensional zones. This extent of deformation adjacent to major oceanic transforms is rare, and we develop a number of ideas to explain its origin. [References: 53]
机译:有人建议将Bouvet三重交汇点发展为20至10 Ma之间的脊峰-断层(RFF)类型,将最南端的中大西洋海岭(SMAR)与Bouvet和Conrad变换连接到东部和西部,分别。我们在侧向扫描和多波束声纳的这两个变换的北面立即进行了勘测,这些声纳原本是在SMAR与两个变换交界处附近创建的。声纳数据显示,经布板旋转校正后,位于Bouvet和Conrad侧的SMAR织物彼此平行,因此它们很可能形成在同一扩展脊上,并确认三重连接确实为RFF。我们的第二个主要结果是,SMAR织物被正常断层广泛横切,在这两个转换所调查的大部分400 km范围内,并且在Bouvet转换以北最为密集。在多通道地震图像中,生长断层和影响沉积物表面的断层表明该变形是长期存在的,并且可能正在进行。由于横切断层的方向与剪切带张性断裂的方向相似,因此我们将这些区域解释为张性带。与主要海洋转变相邻的这种程度的变形是罕见的,我们提出了许多想法来解释其起源。 [参考:53]

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