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Combining remote sensing surveys, digital and in situ field trips in higher education geology classroom
by
Graindorge, David
, Agranier, Arnaud
, Delacourt, Christophe
, Jaud, Marion
, Kernec, Maxime
in
aerial photography
/ airborne methods
/ Alps
/ Applied geology
/ Areal geology
/ Classrooms
/ Curricula
/ Data acquisition
/ Data analysis
/ Data processing
/ data quality
/ data sharing
/ Datasets
/ Earth science
/ Earth Sciences
/ Education
/ Educational institutions
/ Educational objectives
/ Environmental impact
/ Europe
/ field studies
/ Field study
/ Field trips
/ France
/ French Alps
/ Geographic information systems
/ Geology
/ geosciences
/ graduate-level education
/ image analysis
/ marine geology
/ Marine sciences
/ Mont Chenaillet
/ OceanField project
/ Oceanography
/ Ornon Pass
/ Photogrammetry
/ Remote sensing
/ Rochail Granite
/ Rocks
/ satellite methods
/ Sciences of the Universe
/ Sediments
/ simulation
/ Software
/ Stratigraphy
/ structure-from-motion photogrammetry
/ Students
/ Teaching
/ University of Brest
/ unmanned aerial vehicles
/ virtual field trip (vft)
/ virtual field trips
/ virtual reality
/ virtual reality (vr)
/ Western Europe
/ Working conditions
2025
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Combining remote sensing surveys, digital and in situ field trips in higher education geology classroom
by
Graindorge, David
, Agranier, Arnaud
, Delacourt, Christophe
, Jaud, Marion
, Kernec, Maxime
in
aerial photography
/ airborne methods
/ Alps
/ Applied geology
/ Areal geology
/ Classrooms
/ Curricula
/ Data acquisition
/ Data analysis
/ Data processing
/ data quality
/ data sharing
/ Datasets
/ Earth science
/ Earth Sciences
/ Education
/ Educational institutions
/ Educational objectives
/ Environmental impact
/ Europe
/ field studies
/ Field study
/ Field trips
/ France
/ French Alps
/ Geographic information systems
/ Geology
/ geosciences
/ graduate-level education
/ image analysis
/ marine geology
/ Marine sciences
/ Mont Chenaillet
/ OceanField project
/ Oceanography
/ Ornon Pass
/ Photogrammetry
/ Remote sensing
/ Rochail Granite
/ Rocks
/ satellite methods
/ Sciences of the Universe
/ Sediments
/ simulation
/ Software
/ Stratigraphy
/ structure-from-motion photogrammetry
/ Students
/ Teaching
/ University of Brest
/ unmanned aerial vehicles
/ virtual field trip (vft)
/ virtual field trips
/ virtual reality
/ virtual reality (vr)
/ Western Europe
/ Working conditions
2025
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Do you wish to request the book?
Combining remote sensing surveys, digital and in situ field trips in higher education geology classroom
by
Graindorge, David
, Agranier, Arnaud
, Delacourt, Christophe
, Jaud, Marion
, Kernec, Maxime
in
aerial photography
/ airborne methods
/ Alps
/ Applied geology
/ Areal geology
/ Classrooms
/ Curricula
/ Data acquisition
/ Data analysis
/ Data processing
/ data quality
/ data sharing
/ Datasets
/ Earth science
/ Earth Sciences
/ Education
/ Educational institutions
/ Educational objectives
/ Environmental impact
/ Europe
/ field studies
/ Field study
/ Field trips
/ France
/ French Alps
/ Geographic information systems
/ Geology
/ geosciences
/ graduate-level education
/ image analysis
/ marine geology
/ Marine sciences
/ Mont Chenaillet
/ OceanField project
/ Oceanography
/ Ornon Pass
/ Photogrammetry
/ Remote sensing
/ Rochail Granite
/ Rocks
/ satellite methods
/ Sciences of the Universe
/ Sediments
/ simulation
/ Software
/ Stratigraphy
/ structure-from-motion photogrammetry
/ Students
/ Teaching
/ University of Brest
/ unmanned aerial vehicles
/ virtual field trip (vft)
/ virtual field trips
/ virtual reality
/ virtual reality (vr)
/ Western Europe
/ Working conditions
2025
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Combining remote sensing surveys, digital and in situ field trips in higher education geology classroom
Journal Article
Combining remote sensing surveys, digital and in situ field trips in higher education geology classroom
2025
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Overview
The OceanField project is an integrated field-work and classroom-based course offered to first year Master students in Marine Geosciences (at the European Institute for Marine Studies IUEM - University of Brest), creating a synergy between (1) geology field class, (2) photogrammetric data acquisition and (3) data processing to produce digital terrain models, enabling the immersive experience to be extended in a digital working environment once back in class. In this way, the students experiment different approaches for observing and analysing the structure, geometry and nature of a past oceanic domain in the Alps, and gain an understanding of how it works (from its birth to its disappearance). At the same time, participating in the acquisition and processing of photogrammetric data, students acquire new technical skills. By not only being immersed in the virtual environment, but also contributing to its creation, students are involved in the various stages of the data lifecycle. As a result, they become more aware of multiscale data quality and of the opportunities offered by virtual environment accuracy.
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