Automatic generation of 3D geophysical models using curvatures derived from airborne gravity gradient data

被引:11
|
作者
Cevallos, Carlos [1 ]
机构
[1] CGG Aviat, Perth, WA, Australia
关键词
POTENTIAL-FIELD DATA; CANNING BASIN; WESTERN-AUSTRALIA; REEF;
D O I
10.1190/GEO2013-0436.1
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
A method for automatic 3D model generation derived from airborne gravity gradient data was illustrated. The proposed method computed a volumetric distribution of curvatures that form a 3D image of possible density distributions. The method relies on spectral analysis and the equivalence of the power spectra of the classical mean and differential curvatures of equipotential surfaces to create pseudodepth slices of a quantity that describes the geometry of the surfaces: the shape index. The method was carried out in three steps. First, the pseudodepth slices of the vertical gravity gradient and the magnitude of the differential curvature components were generated. Second, equivalent pseudodepth slices of the shape index were generated. Finally, 3D interpolation was carried out to obtain the final model. The synthetic model data indicated that the vertical density contrasts were well modeled. A 3D model derived from FALCON airborne gravity gradiometer data from the Canning Basin, Australia, was compared to an independently interpreted integrated 3D earth geologic model.
引用
收藏
页码:G49 / G58
页数:10
相关论文
共 50 条
  • [31] Implicit Regularization for Reconstructing 3D Building Rooftop Models Using Airborne LiDAR Data
    Jung, Jaewook
    Jwa, Yoonseok
    Sohn, Gunho
    [J]. SENSORS, 2017, 17 (03)
  • [32] Automatic generation of pipelines from 2D CAD drawings to 3D IFC models using a parametric method
    Yin, Dixian
    Deng, Xueyuan
    Lu, Kun
    [J]. INTERNATIONAL JOURNAL OF CONSTRUCTION MANAGEMENT, 2024,
  • [33] Automatic 3D Building Reconstruction from Airborne LiDAR Measurements
    Zhang, Keqi
    Yan, Jianhua
    Chen, Shu-Ching
    [J]. 2009 JOINT URBAN REMOTE SENSING EVENT, VOLS 1-3, 2009, : 483 - +
  • [34] AUTOMATIC FINITE ELEMENT MESH GENERATION AND CORRECTION FROM 3D IMAGE DATA
    Bardyn, T.
    Reyes, M.
    Boyd, S.
    Buechler, P.
    [J]. WORLD CONGRESS ON MEDICAL PHYSICS AND BIOMEDICAL ENGINEERING, VOL 25, PT 4: IMAGE PROCESSING, BIOSIGNAL PROCESSING, MODELLING AND SIMULATION, BIOMECHANICS, 2010, 25 : 1873 - 1876
  • [35] COMPARISON OF SOFTWARE SOLUTIONS FOR AUTOMATIC GENERATION OF 3D BUILDING MODELS
    Hron, Vojtech
    Kostin, Vitalii
    Halounova, Lena
    [J]. GEOCONFERENCE ON INFORMATICS, GEOINFORMATICS AND REMOTE SENSING, VOL I, 2014, : 513 - 520
  • [36] Automatic Generation of 3D Building Models by Rectification of Building Polygons
    Sugihara, Kenichi
    Shen, Zhen-Jiang
    [J]. ADVANCED SCIENCE LETTERS, 2015, 21 (12) : 3649 - 3654
  • [37] AUTOMATIC GENERATION OF 3D BUILDING MODELS BY BUILDING POLYGONS ORTHOGONALIZATION
    Sugihara, Kenichi
    Shen, Zhen-Jiang
    [J]. PROCEEDINGS OF THE INTERNATIONAL CONFERENCES ON INTERFACES AND HUMAN COMPUTER INTERACTION 2015, GAME AND ENTERTAINMENT TECHNOLOGIES 2015 AND COMPUTER GRAPHICS, VISUALIZATION, COMPUTER VISION AND IMAGE PROCESSING 2015, 2015, : 140 - 146
  • [38] Automatic generation of dynamic 3D models for medical segmentation tasks
    Dornheim, Lars
    Dornheim, Jana
    Toennies, Klaus D.
    [J]. MEDICAL IMAGING 2006: IMAGE PROCESSING, PTS 1-3, 2006, 6144
  • [39] Quality analysis on 3D building models reconstructed from airborne laser scanning data
    Elberink, Sander Oude
    Vosselman, George
    [J]. ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2011, 66 (02) : 157 - 165
  • [40] Automatic extraction of trees for 3D city models from images and height data
    Straub, BM
    Heipke, C
    [J]. AUTOMATIC EXTRACTION OF MAN-MADE OBJECTS FROM AERIAL AND SPACE IMAGES (III), 2001, : 267 - 277