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An analysis of tectonic structures in Venusian crustal plateaus: Structure, kinematics, and numerical modeling.

机译:金星地壳高原的构造结构分析:结构,运动学和数值模拟。

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摘要

Venusian crustal plateaus are ancient features with complex and unique structural histories. Crustal plateaus exhibit steep sides, subdued topography, and are isostatically supported via crustal roots. Tectonic hypotheses for crustal plateau formation consist of a downwelling model, in which crustal thickening and surface deformation occur by horizontal flow above cylindrical mantle “drips;” and an upwelling model, in which crustal thickening occurs by magmatic processes above a hot plume. The downwelling model predicts early and pervasive contraction expressed at the surface as folds and thrust faults. The upwelling model predicts early and pervasive extension of a thin layer in a hot environment, with possible minor contraction perpendicular to extension producing folds or other shortening features normal to extensional features. Subsequent cooling leads to an increasingly thick strong surface layer accompanied by a secular increase in the characteristic wavelength of deformation. The first paper of this dissertation consists of a detailed structural and kinematic analysis of the tectonic features preserved at Ovda Regio, Venus' largest crustal plateau. The results indicate that Ovda preserves a surface strain history consistent with the plume hypothesis for crustal plateau origin, and inconsistent with the downwelling hypothesis.; Following on this work, Paper 2 presents results of a global Fourier and Walsh spectral analysis of early extensional “ribbon” structures in crustal plateaus and other occurrences of “tessera,” the characteristic terrain of crustal plateaus. The purpose of this work is to constrain local thermal conditions during ribbon formation. The results indicate that wherever they occur, ribbon structures record a strong surface layer less than 3 km thick—and thus, hot conditions. This analysis further supports the plume hypothesis, because it indicates an early, uniformly thin strong surface layer underlain by a weak substrate over each crustal plateau.; Finally, Paper 3 reports on finite element simulations of formation of short-wavelength (100–500 m) contractional crustal plateau features in crust with elasto-visco-plastic (EVP) rheology, and simultaneous cooling. The purpose of this work was to elucidate the role of these features in the broader context of crustal plateau evolution. The results indicate that (1) like ribbons, the very short-wavelength tectonic features preserved in crustal plateaus require a thermal state sufficiently hot to place the local brittle-ductile transition very close to the surface; (2) at least some of the short-wavelength topography is fault-related; and (3) it is possible to achieve simultaneous development of very short-wavelength fault topography and longer-wavelength viscous folding.; The unifying theme of this dissertation, then, is that the tectonic structures preserved in crustal plateaus record hot conditions during the early stages of plateau evolution, as predicted by the plume hypothesis.
机译:金星地壳高原是具有复杂而独特的结构历史的古老特征。地壳高原表现出陡峭的侧面,柔和的地形,并通过地壳根部等静地支撑着。地壳高原形成的构造假说包括一个下涌模型,在该模型中,地壳增厚和表面变形是由圆柱地幔“滴”上方的水平流发生的。上升流模型,其中地壳通过热羽流上方的岩浆作用而增厚。下降流模型预测在地表的早期和普遍的收缩表现为褶皱和逆冲断层。上升流模型预测了在炎热环境中薄层的早期和普遍延伸,垂直于延伸方向可能会发生轻微收缩,从而产生褶皱或与延伸特征垂直的其他缩短特征。随后的冷却导致越来越厚的坚固表面层,伴随着变形的特征波长的长期增加。本论文的第一篇论文对金星最大的地壳高原Ovda Regio保留的构造特征进行了详细的结构和运动学分析。结果表明,Ovda保留了与地壳高原起源的羽流假说相符的表面应变历史,并且与下沉假说相矛盾。继这项工作之后,论文2给出了对地壳高原早期伸展的“色带”结构以及地壳高原特征性地形“特塞拉”其他事件的整体傅里叶和沃尔什光谱分析的结果。这项工作的目的是在色带形成过程中限制局部热条件。结果表明,无论带状结构发生在何处,其记录下来的坚固表层厚度都小于3 km,因此也很热。该分析进一步支持了羽状流假说,因为它表明了早期,均匀薄的强表层,在每个地壳高原上均被弱基底支撑。最后,论文3报道了地壳中短波(100-500 m)收缩地壳高原特征形成的有限元模拟,具有弹性-粘塑性(EVP)流变学,并同时进行冷却。这项工作的目的是阐明这些特征在地壳高原演化的更广泛背景下的作用。结果表明:(1)像条带一样,保留在地壳高原的非常短波长的构造特征需要足够热的热态才能使局部脆性-韧性转变非常接近地表; (2)至少某些短波地形与断层有关; (3)可以同时发展非常短波长的断层形貌和较长波长的粘性折叠。因此,本文的统一主题是,如羽状假说所预测的那样,保存在地壳高原的构造结构记录了高原演化早期的高温条件。

著录项

  • 作者

    Ghent, Rebecca Rose.;

  • 作者单位

    Southern Methodist University.;

  • 授予单位 Southern Methodist University.;
  • 学科 Geology.; Geophysics.
  • 学位 Ph.D.
  • 年度 2002
  • 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;地球物理学;
  • 关键词

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