首页> 外文学位 >Select problems in planetary structural geology: Global-scale tectonics on Io, regional-scale kinematics on Venus, and local-scale field analyses on Earth with application to Mars.
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Select problems in planetary structural geology: Global-scale tectonics on Io, regional-scale kinematics on Venus, and local-scale field analyses on Earth with application to Mars.

机译:选择行星结构地质学中的问题:有关艾奥的全球尺度构造,有关金星的区域尺度运动学以及对火星应用的地球局部尺度场分析。

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摘要

Io's mountains are cataloged in order to investigate their formation. Of the 101 mountains imaged with sufficient coverage and resolution for further analysis, 4 are volcanoes, and 97 are tectonic massifs. Of the 97 tectonic mountains, ≥40 abut paterae (volcanic or volcano-tectonic depressions). This juxtaposition is unlikely to be coincidental as the probability of it occurring by chance is ∼1.08%. The observed mountain-patera association may be due to orogenic faults acting as conduits for magma ascent, thus fueling patera formation near mountains.; As resurfacing buries a shell of material from Io's surface to the base of the lithosphere, its effective radius is reduced and it heats up. The volume change due to subsidence and thermal expansion is calculated as a function of lithospheric thickness. Conservation of volume dictates that this material is uplifted at Io's surface. By estimating the total volume of mountains, Io's average lithospheric thickness is constrained to ≥12 km.; A kinematic analysis of Nefertiti Corona, Venus, reveals that the corona's interior moved east as a relatively coherent thrust sheet with most deformation occurring on the distal margin. Additionally, an en-echelon array indicates a history of semi-brittle deformation on the northern side of Nefertiti's tectonic annulus. Regional heating from the thermal diapir that formed Nefertiti probably reduced the crustal viscosity and enabled the semi-brittle deformation.; The "Odessa Craters" in the Channeled Scabland of eastern Washington State are basaltic ring structures (BRSs) 50--500 m in diameter that are comprised of discontinuous, concentric outcrops of subvertically-jointed basalt and autointrusive basaltic dikes. It is postulated that they formed as follows: phreatovolcanic activity disrupted a relatively thin, active lava flow forming rootless cones; the lava flow inflated around the cones; tensile stresses caused concentric fracturing; dikes exploited the fractures and fed lava to the surface; and subsequent erosive floods excavated the structures. A second population of BRSs near Tokio Station, WA, are morphologically analogous to quasi-circular structures in Athabasca Valles, Mars (a region that is geologically similar to the Channeled Scabland). If the martian features formed as BRSs, then they indicate local water-lava interactions and at least two floods through Athabasca Valles.
机译:艾奥(Io)的山脉被编入目录以便调查其形成。在具有足够覆盖范围和分辨率进行进一步分析的101个山脉中,有4个是火山,而97个是构造块。在97个构造山脉中,≥40个毗邻山区(火山或火山构造洼地)。这种并置不太可能是巧合,因为偶然发生的可能性约为1.08%。观察到的山-的联系可能是由于造山带断层作为岩浆上升的管道,从而助长了山附近的形成。当重铺表面将一层材料的外壳从艾奥(Io)的表面埋入岩石圈的底部时,其有效半径会减小并会变热。计算出由于沉降和热膨胀引起的体积变化与岩石圈厚度的关系。体积的节约表明该材料在艾奥表面上被隆起。通过估算山的总体积,艾奥的平均岩石圈厚度被限制在≥12km。对金星纳芙蒂蒂·电晕的运动学分析表明,电晕的内部以相对连贯的冲断片向东移动,大部分变形发生在远端边缘。另外,梯级阵列显示了纳芙蒂蒂构造环北侧的半脆性变形历史。形成纳芙蒂蒂的热底盘的局部加热可能会降低地壳粘度并使半脆性变形。华盛顿州东部海峡Sc礁的“敖德萨火山口”是直径为50--500 m的玄武岩环结构(BRS),由不连续,同心的地下垂直玄武岩露头和自侵入性玄武岩堤构成。据推测,它们的形成如下:火山活动破坏了相对薄的,活跃的熔岩流,形成了无根锥体;熔岩流在锥体周围膨胀;拉应力引起同心破裂;堤坝利用裂缝将熔岩注入地面;随后发生的侵蚀性洪水开挖了建筑物。华盛顿州Tokio站附近的第二批BRS在形态上类似于火星的Athabasca Valles(在地质上与海槽Scabland相似的地区)的准圆形结构。如果火星特征形成为BRS,则它们表示局部水-熔岩相互作用和至少两次通过Athabasca Valles发生的洪水。

著录项

  • 作者

    Jaeger, Windy L.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Geology.; Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;天文学;
  • 关键词

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