基于激光强度建立数字露头模型及其应用—以陕西宁强高家山灯影组剖面为例
- 收稿日期:
2025-03-20
- 网络出版日期:
2025-11-18
摘要: 【目的】露头易受到人为活动、风化剥蚀和植被覆盖影响遭到破坏,并且传统考察方式在某些危险地方难以完整、精确获取保存其沉积与储层特征。为此,本研究引入激光扫描技术,旨在解决碳酸盐岩露头表征难度大、岩相识别精度不足和露头原始数据保存的问题,并探索其在沉积学与储层研究中的适用性。【方法】以陕西宁强高家山灯影组剖面为研究对象,利用地面激光扫描获取高精度点云数据,结合激光强度信息开展岩性定量与定性分析。通过三维建模与纹理映射建立数字露头模型;并辅以薄片鉴定、岩石物性测试和野外沉积学调查,开展岩相识别、沉积相划分及沉积模式重建。【结果】(1)建立了高精度数字露头模型,能实现剖面全覆盖的三维可视化交互性分析与保存地质露头;(2)建立了岩性识别图版,明确了不同岩性在剖面中的激光强度特征及厚度占比;藻白云岩与晶粒白云岩表现为激光强度高值区,渗透率相对较高,而泥晶白云岩和泥质白云岩普遍对应低强度值,孔渗特征较差;(3)以灯二段上亚段数字露头模型为例,阐述基于激光强度重新厘定小层的原理,深度刻画14小层地层几何特征;通过沉积模式解析表明,激光强度变化趋势与海平面升降过程密切相关,揭示了沉积旋回演化特征。【结论】激光扫描技术与传统地质研究方法的结合,所建立的数字露头模型不仅为碳酸盐岩露头的沉积特征提供了更加直观的表征,还有效保存了原始野外露头数据,为油气勘探及储层评估提供了数据支持,展示了激光扫描技术在地质研究中的广阔应用前景和巨大潜力。
Building a Digital Outcrop Model Based on Laser Intensity and Its Application: A Case Study of the Gaojiashan Dengying Formation in Ningqiang, Shaanxi
- Received Date:
2025-03-20
- Available Online:
2025-11-18
Abstract: Abstract: [Objective] Carbonate outcrops are often affected by tectonic fragmentation, weathering, and vegetation cover, making it difficult to obtain complete and precise sedimentary and reservoir characteristics by traditional field survey methods. This study introduces terrestrial laser scanning (TLS) to address the challenges in high-resolution characterization of carbonate outcrops, improve lithofacies recognition accuracy, and explore its applicability in sedimentology and reservoir studies. [Methods] Taking the Gaojiashan section of the Dengying Formation in Ningqiang, Shaanxi as an example, high-precision point cloud data were acquired using TLS, and laser intensity information was analyzed quantitatively and qualitatively. Three-dimensional digital outcrop models were constructed through point cloud modeling and texture mapping. Combined with thin-section petrography, rock physical property tests, and field sedimentological investigations, lithofacies recognition, sedimentary facies classification, and depositional model reconstruction were carried out. [Results and Discussions] (1) A high-resolution digital outcrop model was established, which enables full-coverage 3D visualization and interactive analysis of the outcrop, allowing geological features such as lithology and stratigraphic geometry to be accurately preserved and studied. (2) A lithology recognition atlas based on laser intensity was established, clarifying the intensity features and thickness proportions of different lithologies within the profile. Dolostone facies such as algal dolostone and crystalline dolostone correspond to high laser intensity and relatively high porosity–permeability values, while micritic dolostone and argillaceous dolostone correspond to low intensity and poor reservoir quality, indicating a good correlation between laser intensity and reservoir properties. (3) Using the upper sub-member of the second member of the Dengying Formation as an example, sub-layer division was refined based on laser intensity, and the geometric characteristics of the 14th sub-layer were deeply characterized. Analysis of depositional patterns indicated that variations in laser intensity are closely related to sea-level fluctuations, revealing cyclic depositional evolution. [Conclusions] The integration of TLS with traditional geological methods provides a more intuitive representation of carbonate outcrop features and effectively preserves primary field data. The digital outcrop model established in this study offers valuable data support for hydrocarbon exploration and reservoir evaluation, demonstrating the broad prospects and significant potential of TLS applications in geological research.
吴湘, 胡忠贵, 曾齐红, 张文济, 邵燕林, 魏薇, 佟伟桀, 赵春晖, 汪思艺. 基于激光强度建立数字露头模型及其应用—以陕西宁强高家山灯影组剖面为例[J]. 沉积学报. doi: 10.14027/j.issn.1000-0550.2025.040
Building a Digital Outcrop Model Based on Laser Intensity and Its Application: A Case Study of the Gaojiashan Dengying Formation in Ningqiang, Shaanxi[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2025.040
| Citation: |
Building a Digital Outcrop Model Based on Laser Intensity and Its Application: A Case Study of the Gaojiashan Dengying Formation in Ningqiang, Shaanxi[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2025.040
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