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The discovery of a conjugate system of faults in the Wharton Basin intraplate deformation zone

机译:沃顿盆地板内形变带断裂共轭体系的发现

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摘要

The deformation at well-defined, narrow plate boundaries depends on the relative plate motion, but how the deformation takes place within a distributed plate boundary zone remains a conundrum. This was confirmed by the seismological analyses of the 2012 great Wharton Basin earthquakes [moment magnitude (Mw) 8.6], which suggested the rupture of several faults at high angles to one another. Using high-resolution bathymetry and seismic reflection data, we report the discovery of new N294°E-striking shear zones, oblique to the plate fabric. These shear zones are expressed by sets of normal faults striking at N335°E, defining the direction of the principal compressional stress in the region. Also, we have imaged left-lateral strike-slip faults along reactivated N7°E-oriented oceanic fracture zones. The shear zones and the reactivated fracture zones form a conjugate system of faults, which accommodate present-day intraplate deformation in the Wharton Basin.
机译:在明确定义的狭窄板边界处的变形取决于板的相对运动,但是变形如何在分布式板边界区域内发生仍然是一个难题。 2012年沃顿顿大地震的地震学分析[矩震级(Mw)8.6]证实了这一点,该地震表明若干断层在高角度处破裂。使用高分辨率测深法和地震反射数据,我们报告了新的N294°E撞击剪切带的发现,该剪切带倾斜于板织物。这些剪切带由在N335°E发生的多组正断层表示,定义了该区域主压应力的方向。此外,我们还绘制了沿重新活化的N7°E定向的海洋断裂带的左走向走滑断层。剪切带和再活化的断裂带形成断层共轭体系,适应了沃顿盆地当前的板内变形。

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