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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Origin of the structure and planform of small impact craters in fractured targets: Endurance Crater at Meridiani Planum, Mars
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Origin of the structure and planform of small impact craters in fractured targets: Endurance Crater at Meridiani Planum, Mars

机译:破碎目标中小型撞击坑的结构和平面形状的起源:火星Meridiani Planum的耐力坑

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We present observations and models that together explain many hallmarks of the structure and growth of small impact craters forming in targets with aligned fractures. Endurance Crater at Meridiani Planum on Mars (diameter ≈ 150. m) formed in horizontally-layered aeolian sandstones with a prominent set of wide, orthogonal joints. A structural model of Endurance Crater is assembled and used to estimate the transient crater planform. The model is based on observations from the Mars Exploration Rover Opportunity: (a) bedding plane orientations and layer thicknesses measured from stereo image pairs; (b) a digital elevation model of the whole crater at 0.3. m resolution; and (c) color image panoramas of the upper crater walls. This model implies that the crater's current shape was mostly determined by highly asymmetric excavation rather than long-term wind-mediated erosion. We show that modal azimuths of conjugate fractures in the surrounding rocks are aligned with the square component of the present-day crater planform, suggesting excavation was carried farther in the direction of fracture alignments. This was previously observed at Barringer Crater in Arizona and we show the same relationship also holds for Tswaing Crater in South Africa. We present models of crater growth in which excavation creates a " stellate" transient cavity that is concave-cuspate in planform. These models reproduce the " lenticular-crescentic" layering pattern in the walls of some polygonal impact craters such as Endurance and Barringer Craters, and suggest a common origin for tear faults and some crater rays. We also demonstrate a method for detailed error analysis of stereogrammetric measurements of bedding plane orientations.
机译:我们提供的观测数据和模型共同解释了对准裂缝目标中形成的小型撞击坑的结构和生长的许多特征。在火星上的Meridiani Planum(直径≈150.m)上形成的耐力火山口形成于水平分层的风成砂岩中,具有突出的一组宽的正交节理。组装了Endurance陨石坑的结构模型,并用于估算瞬态陨石坑的平面形式。该模型基于“火星探测漫游者”机会的观察结果:(a)从立体图像对测量的层理平面方向和层厚度; (b)整个陨石坑的数字高程模型为0.3。分辨率(c)火山口上壁的彩色全景图。该模型表明,火山口的当前形状主要由高度不对称的开挖而不是长期的风蚀引起。我们表明,在围岩中共轭裂缝的模态方位角与当今的环形坑平面图的正方形分量对齐,这表明在裂缝对齐方向上的挖掘工作更远。以前在亚利桑那州的Barringer火山口曾观察到这种情况,我们也发现南非的Tswaing火山口也存在同样的关系。我们介绍了火山口生长的模型,其中开挖产生了一个“星状”的瞬态空腔,该空腔在平面形状中为凹尖形。这些模型在诸如Endurance和Barringer陨石坑的某些多边形撞击坑的壁上重现了“双凸透镜-月牙形”的分层模式,并提出了断层破裂和某些陨石坑射线的共同起源。我们还演示了一种用于床上用品平面方向的立体测量的详细误差分析的方法。

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