Implicit 3D Geological Modeling - Automated 3D Geological Modeling of Complex Structures
Features of Horin lmplicit 3D Geological Modeling:
Multi-source Data Integration
The advanced 3D geological modeling functionality allows for constrained modeling based on collected geological data, drilling information and the geological interpretation results of gravity, magnetic, electrical and seismic. This enables the creation of a comprehensive 3D geological model that aligns with all exploration outcomes.
Horin implicit modeling interface
3D Geological Model 2D Projection and Analysis of 3D Drillhole Data
Advanced Modeling Algorithm
The advanced Co-Krige algorithm can compute 3D geological models that adhere to stratigraphic sequences and possess complex structures, showcasing distinctively clear and detailed 3D geological models with enhanced consistency, rationality, and reliability.
Drillhole Modeling
Modeling Based on Rules
Horin's implicit modeling calculation is based on stratigraphic sedimentary sequences, the cutting relationships between faults, and the cutting relationships between faults and strata, resulting in models that better align with geological principles.
Definition of Stratigraphy and Contact Relationship Settings Cutting Relationship Settings
By analyzing the sedimentary environment and stratigraphic stacking relationships, combined with fault activity in geological history, the morphology and distribution characteristics of the real geological body can be reflected; implicit modeling can better simulate complex underground structures by setting rules such as sedimentary sequences and the cutting relationship between faults and strata; it can capture the continuity and changes of geological layers, and effectively handle multi-level and multi-directional structural features.
3D Geological Model (Including Faults)
Automated Modeling
It enables the rapid creation of highly detailed 3D geological models, significantly improving workflow efficiency and modeling outcomes. In just a few hours, intricate and high-resolution3D geological models can be generated, resulting in a substantial improvement in modeling effectiveness.
Geological Structure -Dome Geological Structure - Folds
2D-3D Integration
All map and section data work together in the 3D modeling process, producing a flexible 3D geological model that can be sliced to create corresponding sectional geological models for display.
Fine 3D geological model integrated with 3D visualization
Implicit 3D Geological Modeling - Automated 3D Geological Modeling of Complex Structures
High-Level Multi-Source Data Fusion
This function integrates geological map, topographic data, geological section,geophysical interpretation results, drillhole lithology data, stratigraphicdata, and fault data into a comprehensive 3D geological model. It employsunified vector data for collaborative interpolation, using statistical analysisand automatic interpolation methods to normalize multi-source data into asingle 3D geological model.
High Degree of Automation
Users only need to import multi-source data and perform vectorization; thesoftware can then generate a model with a single click. Modifying the modelingresults is also convenient—users can simply make adjustments or refinements tothe vectorized results of the multi-source data and update the 3D model withone click.
High Reliability
The model exhibits greater consistency, accuracy, and reliability. It isconstructed through 3D automatic interpolation based on multi-source geosciencedata. The automatic interpolation of multi-source data using statistical patternsnot only speeds up the process but also provides results that are moreconsistent and accurate than manual interpretations. The resulting 3Dgeological model boasts unprecedented accuracy and reliability.
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