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An integrated geotechnical database and GIS for 3D subsurface modelling: Application to Chennai City, India

机译:用于3D地下建模的集成岩土电阻库和GIS:在印度钦奈市的应用

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Abstract Subsurface characterization and clear distinction between layer boundaries in geological profiles are essential for successful completion of engineering projects. Due to limitations in accessing the vast and diverse subsurface information, efficient management of geotechnical data is of special importance. This study presents the methodology of building a digitally formatted and integrated spatial database using geotechnical data and geographic information system (GIS). The development of comprehensive geotechnical (geo)-database involves (1) Collection of borehole data from various reputed sources, (2) Validation of data in terms of accuracy and redundancy and (3) Standardizing and organizing the geotechnical information for incorporating into the database. The database is then integrated with GIS to provide the advantage of visualizing, analysing and interpreting the geotechnical information spatially. In addition, stratigraphic data stored within the spatial database is utilized for constructing three-dimensional (3D) subsurface models. A simplified approach is developed for 3D subsurface modelling with a combination of the Relational database management systems (Microsoft Access), Arc-GIS and Spatial interpolation techniques. The proposed methodology is illustrated using nearly 175 borehole data collected from various projects aimed at providing an exhaustive database and an integrated 3D environment for the Chennai City of south India for better interpretation and decision-making in regard to sustainable urban development. The study also demonstrates the application of the developed subsurface model in evaluating the effectiveness of multichannel analysis of surface wave (MASW) tests to estimate the depth to bedrock, which will be of immense use in foundation studies and in ground response analysis.
机译:摘要地产表征和地质型材层边界之间的清晰区别对于成功完成工程项目至关重要。由于访问广泛和多样化的地下信息的限制,高效管理岩土管理数据具有特殊重要性。本研究介绍了使用岩土数据和地理信息系统(GIS)构建数字格式化和集成空间数据库的方法。综合岩土(Geo)-Database的发展涉及(1)从各种知名来源的钻孔数据收集(2)在准确性和冗余方面验证数据,(3)标准化和组织岩土信息以结合到数据库中。然后将数据库与GIS集成,以便在空间上可视化,分析和解释岩土信息的优点。另外,存储在空间数据库内的地层数据用于构建三维(3D)地下模型。具有用于3D地下建模的简化方法,具有关系数据库管理系统(Microsoft Access),ARC-GIS和空间插值技术的组合。所提出的方法是使用从各种项目中收集的近175个钻孔数据来说明,该项目旨在为南印度钦奈市提供详尽的数据库和集成的3D环境,以便更好地解释和决策在可持续的城市发展方面。该研究还展示了发达的地下模型在评估表面波(MasW)测试的多通道分析的有效性中的应用,以估计到基岩的深度,这将是在基础研究和地面响应分析中的巨大用途。

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