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Passive continental margin salt tectonics: Numerical modelling, analytical stability analysis, and applications to the Scotian margin, offshore eastern Canada.

机译:被动大陆边缘盐构造:数值模拟,分析稳定性分析及其在加拿大东部沿海斯科特边缘的应用。

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摘要

The post-rift structural evolution of many rifted continental margins has been affected by the mobilization and continued flow of weak syn- or early post-rift salt layers. Driven primarily by regional differential sediment loading, salt flow can deform the sedimentary overburden into a range of complex structures, many of which can become effective hydrocarbon traps. In this thesis, controls on salt mobilization and resulting structural styles are investigated using 2D finite element modelling, analytical mechanics, and reflection seismic data from the Scotian Margin.;Lubrication theory combined with limit analysis is used to determine an analytical stability criterion for simple systems where a sediment overburden of laterally varying thickness overlies a linear viscous salt layer. The differential loading produces a pressure gradient and induces salt flow. If the differential loading is large enough, the overburden fails, which creates a region of landward extension compensated by basinward contraction. For submarine systems, water loading increases solid and fluid pressures in the sediments, reduces the pressure gradient on the salt, and buttresses the overburden.;Slow sediment progradation causes a diachronous structural evolution comprising four main phases: (1) Ninitiation of salt flow and the formation of salt withdrawal minibasins and diapirs; (2) onset of normal growth faulting and extension of the overburden; (3) large-scale evacuation of the salt, and overburden rafting; (4) formation of an allochthonous salt nappe that overthrusts the depositional limit of the salt. Seaward margin tilt increases the rate of salt flow and overburden deformation, while flexural isostatic adjustment has the opposite effects.;The formation of mini-basins, where the overburden is less dense than salt, requires a dynamical stress to create the necessary dynamic bathymetry. Numerical results indicate that the toe-of-slope contractional domain is one region of a passive margin where this dynamical stress amplifies mini-basins.;Numerical modelling, in conjunction with seismic interpretation, has allowed the development of a new conceptual model for the post-rift structural evolution of part of the northeastern Scotian Margin. Here, Jurassic deltaic sedimentation squeezed salt basinward producing an open-toed salt nappe. Subsequent sedimentation caused gravity spreading over the nappe and produced regional extensional structures characterized by landward dipping sigmoidal stratigraphy.*.;*This dissertation is a compound document (contains both a paper copy and a CD as part of the dissertation). The CD requires the following system requirements: Internet browser; Adobe Acrobat.
机译:裂谷后边缘的动员和持续流动影响了裂谷后大陆边缘许多裂谷后的结构演化。盐分流主要由区域性的不同沉积物负荷驱动,可使沉积物覆盖层变形为一系列复杂的结构,其中许多结构可以成为有效的碳氢化合物捕集器。本文利用二维有限元建模,分析力学和斯科肯边界的反射地震数据研究了盐分的动员及其形成的结构样式。润滑理论结合极限分析确定了简单系统的分析稳定性判据厚度横向变化的沉积物覆盖层覆盖线性粘性盐层。差异载荷产生压力梯度并引起盐流。如果差异荷载足够大,则覆盖层将失效,这将形成一个由陆向收缩补偿的陆向延伸区域。对于海底系统,水负荷增加了沉积物中的固体和流体压力,降低了盐上的压力梯度,支撑了上覆岩层。缓慢的沉积物沉积导致了结构上的历时演变,包括四个主要阶段:(1)盐流的初始化和抽盐小流域和底盘的形成; (2)正常生长断裂的发生和覆盖层的扩展; (3)大规模疏散盐分,进行覆膜漂流; (4)形成异质盐质推覆层,推翻了盐的沉积极限。向海的边坡倾斜增加了盐流和覆盖层变形的速率,而挠性等静压调节则具有相反的效果。在覆盖比盐少的情况下,微型盆地的形成需要动应力来建立必要的动态测深法。数值结果表明,坡脚的收缩区域是被动边缘的一个区域,在该区域中,该动应力放大了小盆地。数值模拟与地震解释相结合,允许开发一种新的概念模型。东北斯科廷边缘部分的裂谷构造演化。在这里,侏罗纪三角洲的沉积向盆地挤压了盐,形成了露趾的盐尿布。随后的沉积使重力分散到整个尿布上,并形成了以陆上浸入的S形地层为特征的区域伸展构造。*。*本论文是一本复合文件(该论文包括纸质副本和CD)。 CD需要满足以下系统要求:Internet浏览器; Adobe Acrobat。

著录项

  • 作者

    Ings, Steven J.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 352 p.
  • 总页数 352
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 非洲史;
  • 关键词

  • 入库时间 2022-08-17 11:40:07

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