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Deep-seated gravitational slope deformation scaling on Mars and Earth: same fate for different initial conditions and structural evolutions

机译:火星和地球上深层次的重力坡变形标度:相同的命运适用于不同的初始条件和结构演化

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Some of the most spectacular instances of deep-seated gravitational slope deformation (DSGSD) are found on Mars in the Valles Marineris region. They provide an excellent opportunity to study DSGSD phenomenology using a scaling approach. The topography of selected DSGSD scarps in Valles Marineris and in the Tatra Mountains is investigated after their likely similar postglacial origin is established. The deformed Martian ridges are larger than the deformed terrestrial ridges by 1?to 2?orders of magnitude with, however, a similar height-to-width ratio of ~0.24 . The measured horizontal spreading perpendicular to the ridges is proportionally 1.8 to 2.6 times larger for the Valles Marineris ridges than the Tatra Mountains and vertically 2.9 to 5.1 times larger, suggesting that starting from two different initial conditions, with steeper slopes in Valles Marineris, the final ridge geometry is now similar. Because DSGSD is expected to now be inactive in both regions, their comparison suggests that whatever the initial ridge morphology, DSGSD proceeds until a mature profile is attained. Fault displacements are therefore much larger on Mars. The large offsets imply reactivation of the DSGSD fault scarps in Valles Marineris, whereas single seismic events would be enough to generate DSGSD fault scarps in the Tatra Mountains. The required longer activity of the Martian faults may be correlated with a long succession of climate cycles generated by the unstable Martian obliquity.
机译:深层重力斜坡变形(DSGSD)的一些最引人注目的实例是在Valles Marineris地区的火星上发现的。他们提供了使用缩放方法研究DSGSD现象学的绝好机会。在确定了它们可能相似的冰川后起源之后,对选定的DSGSD陡坡的地形进行了调查,这些陡坡是在Valles Marineris和Tatra山中进行的。变形的火星山脊比变形的陆地山脊大1〜2个数量级,但高宽比相似,约为0.24。相对于塔特拉山,Valles Marineris脊垂直于山脊测得的水平展宽成比例地比塔特拉山大1.8至2.6倍,垂直方向大于2.9至5.1倍,这表明从两个不同的初始条件开始,Valles Marineris的坡度较陡,最终脊的几何形状现在相似。由于预计DSGSD现在在这两个区域都将处于非活动状态,因此他们的比较表明,无论初始山脊形态如何,DSGSD都会继续进行直至获得成熟的剖面。因此,火星上的断层位移要大得多。较大的偏移量意味着在Valles Marineris中重新激活了DSGSD断层,而一次地震事件就足以在Tatra山中产生DSGSD断层。火星断层所需的更长的活动可能与不稳定的火星倾角产生的长期的气候循环有关。

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