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首页> 外文期刊>Journal of South American earth sciences >Digital outcrop modelling using 'structure-from- motion' photogrammetry: Acquisition strategies, validation and interpretations to different sedimentary environments
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Digital outcrop modelling using 'structure-from- motion' photogrammetry: Acquisition strategies, validation and interpretations to different sedimentary environments

机译:使用“从动结构”摄影测量法进行的数字露头建模:针对不同沉积环境的采集策略,验证和解释

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Structure from Motion-Multi-View Stereo (SfM-MVS) is a relatively new technique that is being adopted in the analysis of sedimentary systems. The technique is especially applicable to studies which focus on the distribution, geometry and quantification of geological bodies including the analysis of sedimentary forms and tectonic structures. This photogrammetric method allows for generating virtual outcrops (VO) and high-resolution digital terrain models (DTMs). In comparison with more sophisticated and expensive techniques such as airborne LiDAR scanning or terrestrial laser scanning, SfM-MVS is a fast low-cost method which with careful use of ground control points, can produce models which are comparable to other digital survey methods for spatial accuracy. In this study, the effectiveness of SfM-MVS in a series of quantitative case studies in sedimentary and basin analyses is discussed. Focus is placed on how the research questions define the workflow strategy to know the limitations, sources of error and potential utility that the SFM-MVS technique has when a virtual sedimentary system is interpreted. Three case studies of different sedimentary environments, previously analyzed with traditional fieldwork techniques, were selected and re-analyzed. For each case study the objective was to resolve quantitative questions that were not possible to determine without the use of VO or DTMs. Questions include: (i) geometrical restoration of a growth strata succession associated with thrust systems; (ii) stacking patterns of littoral ridges during a relative sea-level fall after the Holocene climatic optimum; and (iii) quantification of lake level fall during the past 44 years of a closed lake basin. The results of the work show that the technique has significant application in the analysis of sedimentary systems. However, since geological interpretations depend on the quality of the models that are generated, planning and construction of the VO or DEMs along with their validation are essential to ensure reliable results.
机译:多视立体运动(SfM-MVS)的结构是一种相对较新的技术,正在用于沉积系统分析中。该技术尤其适用于关注地质体的分布,几何形状和定量化的研究,包括沉积形式和构造结构的分析。这种摄影测量方法可以生成虚拟露头(VO)和高分辨率数字地形模型(DTM)。与机载LiDAR扫描或地面激光扫描等更先进,更昂贵的技术相比,SfM-MVS是一种快速的低成本方法,在谨慎使用地面控制点的情况下,可以产生与其他数字空间测量方法可比的模型准确性。在这项研究中,SfM-MVS在一系列沉积和盆地分析定量案例研究中的有效性进行了讨论。重点放在研究问题如何定义工作流程策略上,以了解在解释虚拟沉积系统时SFM-MVS技术的局限性,误差来源和潜在实用性。选择并重新分析了三个不同沉积环境的案例研究,这些案例以前使用传统的野外工作技术进行了分析。对于每个案例研究,目的都是解决无法使用VO或DTM无法确定的定量问题。问题包括:(i)与推力系统有关的生长层演替的几何复原; (ii)全新世气候最佳之后相对海平面下降期间,沿海脊的堆积方式; (iii)在过去的44年中,对一个封闭湖盆的湖水位下降进行量化。工作结果表明,该技术在沉积系统分析中具有重要的应用价值。但是,由于地质解释取决于生成的模型的质量,因此对VO或DEM进行规划和构造以及对其进行验证对于确保可靠的结果至关重要。

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