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Geometric Model Of Conjugate Faulting In The Gyeongsang Basin, Southeast Korea

机译:韩国庆尚盆地共轭断裂的几何模型

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摘要

The NNE trending dextral Yangsan fault system and the WNW trending sinistral Gaum fault system comprise a conjugate set that cuts the Cretaceous Gyeongsang Basin along the SE margin of the Korean Peninsula. These faults evidently formed under compressional stress accompanied by a progressive 12° block rotation, calculated from a geometric model incorporating angles between conjugate fault sets, widths of fault domains, and measured fault displacements. The angle between paleomagnetic declinations in the set of conjugate fault domains increases with age, suggesting incremental block rotation that included overall rotation of the entire Gyeongsang Basin (or the Korean Peninsula) with respect to Eurasia. The model accounts for Yucheon Group volcanism, subsequent caldera subsidence in the Uiseong subbasin, and volcanism in the Miryang subbasin, all produced by regional tension. The tectonic regime of the Gyeongsang Basin apparently evolved from compression to extension at~50 Ma, reflecting India-Eurasia collision and opening of the Sea of Japan (East Sea).
机译:NNE趋势右旋梁山断裂系统和WNW趋势左旋高姆断裂系统包括共轭组,该共轭组沿朝鲜半岛东南边缘切开了白垩纪庆尚盆地。这些断层显然是在压缩应力作用下形成的,伴随着12°的块体逐渐旋转,这是根据包含共轭断层组之间的角度,断层域的宽度和测得的断层位移的几何模型计算得出的。共轭断层域中古磁偏角之间的夹角随年龄增加而增加,表明块体旋转增加,包括整个庆尚盆地(或朝鲜半岛)相对于欧亚大陆的整体旋转。该模型解释了由区域张力产生的Yucheon Group火山活动,随后的义城子盆地的火山口下陷以及Miryang子盆地的火山活动。庆尚盆地的构造体制显然在〜50 Ma时从压缩演化到伸展,反映了印度-欧亚大陆的碰撞和日本海(东海)的开放。

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