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Variability in Early Amazonian Tharsis stress state based on wrinkle ridges and strike-slip faulting

机译:基于皱纹脊和走滑断层的早期亚马逊河套期应力状态的变化

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摘要

We present evidence for a decrease in the magnitude of Tharsis-circumferential compressive stress during the Late Hesperian to the Middle Amazonian based on chronologic changes in the predominant style of faulting in southern Amazonis Planitia. Using high-resolution MOLA topography, we identify a population of strike-slip faults that exhibit Middle Amazonian-aged displacements of regional chrono-stratigraphic units. These strike-slip faults are adjacent to an older population of previously documented Late Hesperian-aged thrust faults (wrinkle ridges). Along-strike orientations of these thrust and strike-slip faults reveal the Tharsis-radial stress to be the area's most compressive remote principal stress and that this stress orientation and magnitude persisted throughout the Late Hesperian to the Middle Amazonian. We show that the change in the predominant style of faulting from thrust faulting to strike-slip faulting during this time requires a decrease of the Tharsis-circumferential compressive stress to a magnitude less than lithostatic load, with negligible change in stress orientation.
机译:我们提供了证据,根据南部亚马孙Planitia断层的主要样式的年代变化,从晚期Hepserian到中亚亚马逊河期间,Tharsis周向压应力的大小有所降低。使用高分辨率的MOLA地形,我们确定了走滑断层的总体,这些走滑断层表现出区域年代地层单位中亚马孙时代的位移。这些走滑断层与以前记录的晚黑塞培尔时代的逆冲断层(皱纹脊)相邻。这些逆冲断层和走滑断层的走向走向表明,塔西斯径向应力是该地区最压缩的远距离主应力,并且这种应力取向和强度在整个晚黑世时期至中亚亚马逊时期都持续存在。我们表明,在这段时间内从逆冲断层到走滑断层的主要断层样式的变化需要将塔里西斯周向压应力减小到小于岩石静载荷的大小,应力方向的变化可以忽略不计。

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