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Balanced restoration of geological volumes with relaxed meshing constraints

机译:放松网格划分约束的地质体平衡恢复

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摘要

Balanced restoration consists in removing the effects of tectonic deformation in order to recover the depositional state of sedimentary layers. Restoration thus helps in the understanding of a geodynamic scenario, reduces structural uncertainties by testing the consistency of the structural model, and, under mechanical behavior assumptions, evaluates retro-deformation. We show how an elastic finite element model can be used to solve restoration problems, by setting displacement boundary conditions on the top horizon and contact boundary conditions on the fault cut-offs. This method is generally applied on a tetrahedral mesh, which raises significant meshing problems in complex structural settings, where restoration is particularly useful. Indeed, the mesh has to be conformable to both faults and horizons, including unconformities and onlap surfaces, which may drastically increase the number of elements and decrease the mesh quality. As an alternative, we propose to represent unfaulted horizons as a property of the tetrahedral model, and to transfer the associated boundary conditions onto the neighboring nodes of the mesh, using an "implicit" approach. The proposed methods are demonstrated on a typical example and results show good agreement between both approaches. While the computational time is equivalent in both cases, the time needed for model building is significantly reduced in the implicit case. In addition, the implicit method provides a convenient way to handle unconformities in restoration, both for eroded surfaces, and on onlap layer geometries. In such cases, our method provides a flexible way to specify the amount of eroded material, and generates less mesh elements than the conforming mesh, thereby reducing computational time.
机译:平衡的恢复包括消除构造变形的影响,以恢复沉积层的沉积状态。因此,恢复有助于理解地球动力学情况,通过测试结构模型的一致性来减少结构不确定性,并在机械行为假设下评估逆向变形。我们展示了如何通过在顶部水平线上设置位移边界条件以及在断层边界上设置接触边界条件来使用弹性有限元模型来解决恢复问题。此方法通常应用于四面体网格,这在复杂的结构设置中会引起严重的网格划分问题,其中修复特别有用。确实,网格必须与断层和地层相适应,包括不整合面和重叠表面,这可能会大大增加元素数量并降低网格质量。作为替代方案,我们建议使用“隐式”方法将无缺陷的层级表示为四面体模型的属性,并将关联的边界条件转移到网格的相邻节点上。在一个典型的例子上证明了所提出的方法,并且结果表明两种方法之间的良好一致性。尽管两种情况下的计算时间是相等的,但隐式情况下显着减少了模型构建所需的时间。另外,隐式方法提供了一种方便的方法来处理修复中的不合格问题,无论是对于受腐蚀的表面,还是在重叠层的几何形状上。在这种情况下,我们的方法提供了一种灵活的方法来指定侵蚀材料的数量,并且生成的网格元素比合格网格要少,从而减少了计算时间。

著录项

  • 来源
    《Computers & geosciences》 |2010年第4期|p.441-452|共12页
  • 作者单位

    Centre de Recherches Petrographiques et Geochimiques (Petrology and Geochemistry Research Center) - School of Geoloy, Nancy-Universite, Rue du doyen Marcel Roubault, 54501 Vandoeuvre-les-Nancy, France;

    Centre de Recherches Petrographiques et Geochimiques (Petrology and Geochemistry Research Center) - School of Geoloy, Nancy-Universite, Rue du doyen Marcel Roubault, 54501 Vandoeuvre-les-Nancy, France;

    Centre de Recherches Petrographiques et Geochimiques (Petrology and Geochemistry Research Center) - School of Geoloy, Nancy-Universite, Rue du doyen Marcel Roubault, 54501 Vandoeuvre-les-Nancy, France Chevron Energy Technology Company, 6001 Bollinger Canyon Rd., San Ramon, CA 94583, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    structural geology; balanced restoration; geomechanics; implicit surface;

    机译:结构地质;恢复平衡;地质力学隐式表面;

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