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Three-dimensional imaging in geology --- Three-dimensional imaging in geology --- Groundwater flow --- Aquifers --- Aquifers --- Mathematical models.
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Three-dimensional imaging in geology --- Groundwater flow --- Aquifers --- Mathematical models.
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Three-dimensional imaging in geology --- Arbuckle-Simpson Aquifer (Okla.) --- Oklahoma
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"The 3D characterization and modelling of geological and geomorphological structures on the Earth, terrestrial planets, satellites and minor bodies in the Solar System poses common problems to different science communities. 3D Digital Geological Models covers two important aspects: (i) remote sensing techniques (e.g. photogrammetry, photoclinometry, LIDAR, laser altimetry) allowing the quantitative characterization of outcrops and geomorphological features, and (ii) innovative 3D interpretation and modelling strategies allowing to obtain new or (more) quantitative results on terrestrial and extra-terrestrial structures. 3D Digital Geological Models is a collection of the most relevant contributions in a volume that will be of interest for the community that is actively working on these topics, but also for a wider community of potential users of the techniques that the editors of this volume are developing. In particular, contributions from students and researchers focusing on more quantitative characterization workflow in their projects will be very interesting. Case studies will include small- to large-scale project on the Earth (e.g. fracturing in carbonate rocks, folding and thrusting in sedimentary sequences, sedimentology, fluid/rock interaction, ductile shear zones, mining projects, applications to hydrocarbon studies, etc.), on terrestrial planets (e.g. magmatism, tectonics, and craters on Mars), and on minor bodies in the Solar System. In the latter category, interesting contributions on the 67P/Churyumov Gerasimenko Comet, recently surveyed by the Rosetta Mission (some of the editors have recently published on Nature their results on the comet) will be discussed."--
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Three-dimensional imaging in geology --- Geology --- Geology. --- Three-dimensional imaging in geology. --- Española Basin (N.M.) --- New Mexico
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"Three-dimensional geologic interpretation of surface and subsurface data requires integration and application of both geologic knowledge and spatial cognitive skills. Much surface geologic mapping still employs pen and paper techniques, but subsurface interpretation is usually accomplished using sophisticated visualization software. In both cases, successful interpreters use mental models that bridge internal and external forms of 3-D visualization to construct 3-D geologic interpretations. This volume sets out to understand more about the convergence of geology, 3-D thinking, and software, which collectively provide the basis for truly effective interpretation strategies. It should appeal to all geologic interpreters, and especially those who investigate and teach interpretation skills."--
Geology --- Three-dimensional imaging in geology. --- Geographical perception. --- Geology, Structural --- Geographical perception. --- Geology --- Geology, Structural --- Three-dimensional imaging in geology. --- Mathematical models. --- Data processing. --- Mathematical models. --- Data processing.
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Geology --- Geological mapping --- Three-dimensional imaging in geology --- Glacial landforms --- Middle West.
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Three-dimensional imaging in geology --- Geology --- Española Basin (N.M.) --- New Mexico
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Three-dimensional imaging in geology --- Geospatial data --- Environmental geology --- Geological surveys --- Data processing. --- Data processing.
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