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Westward advance of the deformation front and evolution of submarine canyons offshore of southwestern Taiwan

机译:台湾西南海域海底峡谷变形前沿和演化的西移

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This study analyzes both 2D and 3D seismic images around the Palm Ridge area offshore of southwestern Taiwan to understand how the deformation front shifted westward and how tectonic activities interact with submarine canyon paths in the transition area between the active and passive margins. Palm Ridge is a submarine ridge that developed on the passive China continental margin by down-dip erosion of several tributaries of Penghu Canyon; it extends eastward across the deformation front into the submarine Taiwan accretionary wedge. The presence of proto-thrusts that are located west of the frontal thrust implies that the compressional stress field has advanced westward due to the convergence of the Philippine Sea Plate and Eurasian Plate. Since the deformation front is defined as the location of the most frontal contractional structure, no significant contractional structure should appear west of it. We thus suggest moving the location of the previously mapped deformation front farther west to where the westernmost proto-thrust lies. High-resolution seismic and bathymetric data reveal that the directions of the paleo-submarine canyons run transverse to the present slope dip, while the present submarine canyons head down slope in the study area. We propose that this might be the result of the westward migration of the deformation front that changed the paleo-bathymetry and thus the canyon path directions. The interactions of down-slope processes and active tectonics control the canyon paths in our study area.
机译:这项研究分析了台湾西南部沿海的Palm Ridge地区周围的2D和3D地震图像,以了解形变前沿如何向西偏移以及构造活动如何与主动和被动边缘之间的过渡区域中的海底峡谷路径相互作用。棕榈岭是在被动大陆大陆边缘通过澎湖峡谷的几个支流的下倾侵蚀而形成的海底脊。它向东延伸穿过变形前沿,进入海底台湾增生楔。位于前冲断面以西的原始冲断层的存在表明,由于菲律宾海床和欧亚板块的交汇,压应力场已向西推进。由于变形前沿定义为最正面的收缩结构的位置,因此在其西部不应出现明显的收缩结构。因此,我们建议将先前映射的变形的位置向西移动到最西端的原始推力所在。高分辨率地震和测深数据显示,古海底峡谷的方向横向于当前坡度倾角,而目前海底峡谷则在研究区域内向下倾斜。我们认为这可能是变形前沿向西迁移的结果,从而改变了古海洋深度测量法,进而改变了峡谷路径的方向。下坡过程与活跃构造的相互作用控制着我们研究区域的峡谷路径。

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