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Interactive 3D Modeling by Integration of Geoscience Datasets for Exploration Targeting in Luanchuan Mo Polymetallic District, China

机译:地球科学数据集探索探讨探讨互动3D建模

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摘要

Three-dimensional (3D) geological modeling is an important method for understanding geological structures and constructing exploration model with multiple source datasets for potential mineral deposits. The Luanchuan Mo polymetallic district located in Henan Province, China, has a complex geological setting and multiple metallogenic types. In this paper, we build a 3D geological model covering 43 km x 26 km x 5 km (vertical) by gravity and magnetic interactive inversion to delineate geometry, depth, and physical properties of geologic bodies at depths. We reduce the geological uncertainty and verify the reliability of the model through the combination of geophysical interactive inversion and tectonic-geochemistry methods. Several deep targets have also been extracted by combining the metallogenic model in the district with the 3D geologic model and tectono-geochemistry dataset. The research results show that the combination of 3D exploration model constrained by gravity and magnetic data with geologic constraints and tectono-geochemical data can be used to delineate the potential targets quickly and accurately in complex geological settings.
机译:三维(3D)地质建模是了解地质结构和构建多个源矿床的勘探模型的重要方法。栾川莫多金属区位于中国河南省,具有复杂的地质环境和多种成矿类型。在本文中,我们通过重力和磁性交互式反转构建了43 km x 26 km x 5km(垂直)的3D地质模型,以在深度下描绘地质体的几何,深度和物理性质。我们通过地球物理交互式反演和构造地球化学方法的组合来降低地质不确定性并验证模型的可靠性。通过将区内的成矿模型与3D地质模型和Tectono-Geochemisty数据集结合,还通过结合了几种深靶点。研究结果表明,由地质约束和构造地球化学数据的重力和磁数据约束的3D勘探模型的组合可用于在复杂的地质环境中快速准确地描绘潜在目标。

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