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Polygonal impact craters in Argyre region, Mars: Implications for geology and cratering mechanics

机译:火星阿尔盖尔地区的多边形撞击坑:对地质学和陨石坑力学的影响

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摘要

Impact craters are not always circular; sometimes their rims are composed of several straight segments. Such polygonal impact craters (PICs) are controlled by pre-existing target structures. mainly faults or other similar planes of weakness. In the Argyre region, Mars, PICs comprise similar to 17% of the total i mpact crater population (> 7 km in diameter), and PICsare relatively more common in older geologic units. Their formation is mainly controlled by radial fractures induced by the Argyre and Ladon impact basins, and to a lesser extent by the basin-concentric fractures. Also basin-induced conjugate shear fractures may play a role. Unlike the PICs, ridges and graben in the Argyre region are mostly controlled by Tharsis-induced tectonism, with the ridges being concentric and graben radial to Tharsis. Therefore, the PICs primarily reflect an old impact basin-centered tectonic pattern, whereas Tharsis-centered tectonism responsible for the graben and the ridges has only minor influence on the PIC rim orientations. According to current models of PIC formation, complex PICs should form through a different mechanism than simple PICs, leading to different orientations of straight rim segments. However. when simple and complex PICs from same areas are Studied, no statistically significant difference call be observed. Hence, in addition to enhanced excavation parallel to the strike of fractures (simple craters) and slumping along the fracture planes (complex craters), we propose a third mechanism involving thrusting along the fracture planes. This model is applicable to both simple and small complex craters in targets with some dominating orientations of structural weakness.
机译:撞击坑并非总是圆形的。有时它们的边缘由几个笔直的部分组成。这样的多边形撞击坑(PIC)是由预先存在的目标结构控制的。主要是断层或其他类似的薄弱环节。在火星的阿盖尔地区,事先知情同意(PIC)占撞击坑总数的17%(直径> 7 km),而在较旧的地质单元中,事先知情同意相对较多。它们的形成主要受阿盖尔(Argyre)和拉登(Ladon)冲击盆地引起的放射状裂缝控制,较小程度受盆地同心裂缝控制。盆地诱发的共轭剪切裂缝也可能起作用。与PIC不同,Argyre地区的山脊和grab陷主要受塔里西斯引起的构造作用控制,这些山脊同心并向塔里西斯呈放射状抓住。因此,事先知情同意主要反映了一个以盆地为中心的老式构造模式,而造成the陷和山脊的以塔西斯为中心的构造则对PIC边缘的取向影响很小。根据当前的PIC形成模型,复杂的PIC应该通过与简单的PIC不同的机制形成,从而导致直边段的方向不同。然而。当研究来自同一地区的简单和复杂的PIC时,没有观察到统计学上显着的差异。因此,除了增强平行于裂缝走向的开挖(简单的火山口)和沿裂缝平面的塌陷(复杂的火山口)外,我们还提出了第三种机制,涉及沿裂缝平面推进。该模型适用于具有结构性弱点主导方向的目标中的简单和小型复杂环形山。

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