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Controls on the Geometry and Evolution of Deep-water Fold Thrust Belt of the NW Borneo.

机译:西北婆罗洲深水褶皱冲断带的几何形状和演化控制。

摘要

The key driving mechanisms for establishing deep-water fold-thrust belt are either lithospheric stress or gravity-driven associated with margin instability or a combination of both. Despite long academic interest, we still lack of detailed understanding of the interaction between the deformation mechanisms (gravity- and tectonic-driven). The results of an evaluation of the interaction between the deformation mechanisms, with focused attention upon the NW Borneo deep-water fold-thrust belt, are reported. A methodology integrating a detailed structural analysis of the deep-water fold-thrust belt from the available subsurface data and equivalent onshore outcrop is utilized in this study. ududDetailed structural analysis of 2D seismic profiles is used to present a basin-scale seismic-stratigraphic framework and detailed description of the general appearance of the deformational style along the deltaic system. Sub-seismic scale investigation of well-exposed outcrops onshore NW Sabah is used to extract information on onshore tectonic deformation, making it possible to evaluate the differences of structural architecture related to different deformation mechanisms. The result has led to an improved understanding of the regional-scale structural geometry along the NW Borneo margin.ududRegional scale cross-sections are used to demonstrate a regional-scale analysis of the NW Borneo margin that includes structural restoration. The results allow an assessment of the relative timing of deformation, the domain interaction and the possible processes and parameters that control deformation. This has led to an improved insight relating to the kinematic nature of the allochthon and the interaction between the deformation mechanisms. Structural restorations are also used to evaluate of areas of compressionally and extensionally dominated systems, in order to verify the main proses responsible for the margin evolution. ududThis study illustrates outcrop-scale to seismic-scale analysis and quantitative measurements combined with seismic interpretations, with the aim to identify the interaction between gravity-and tectonic-driven deformation, and their controls on the geometry and evolution of deep-water fold-thrust systems. Additionally, the margin evolution and the implications on NW Borneo are evaluated. ud
机译:建立深水褶皱冲断带的关键驱动机制是岩石圈应力或与边缘不稳定性相关的重力驱动,或两者兼而有之。尽管有长期的学术兴趣,但我们仍然缺乏对变形机制(重力驱动和构造驱动)之间相互作用的详细了解。报告了变形机制之间相互作用的评估结果,重点关注西北婆罗洲深水褶皱冲断带。在这项研究中,采用了一种方法,该方法结合了可利用的地下数据和等效的陆上露头对深水褶皱冲断带进行的详细结构分析。二维地震剖面的详细结构分析用于呈现盆地尺度的地震地层框架,并详细描述沿三角洲系统的变形样式的总体外观。西北沙巴暴露良好的露头的亚地震规模调查可用于提取陆上构造变形的信息,从而有可能评估与不同变形机制有关的结构构造的差异。结果使人们对西北婆罗洲边缘的区域尺度结构几何有了更好的理解。 ud ud区域尺度的横截面用于演示西北婆罗洲边缘的区域尺度分析,其中包括结构修复。结果允许评估变形的相对时间,区域相互作用以及控制变形的可能过程和参数。这导致了关于异源线的运动学性质以及变形机制之间相互作用的更好的见解。结构修复还用于评估受压和受扩展支配的系统区域,以验证负责边缘演化的主要散文。 ud ud这项研究说明了露头尺度到地震尺度的分析和定量测量以及地震解释,目的是确定重力和构造驱动的变形之间的相互作用,以及它们对深水的几何形状和演化的控制折叠推力系统。此外,还评估了利润率演变及其对西北婆罗洲的影响。 ud

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    Sulaiman Norasiah Binti;

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  • 年度 2017
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