Recent advances in geophysical observations, numerical simulations, remote sensing products, and high-performance computing are generating large and increasingly complex multidimensional datasets. Interpreting these datasets requires advanced processing and modelling together with effective methods for visualisation and integration.
This session focuses on the development and application of advanced visualisation methods for geophysical data. We particularly welcome approaches that improve the exploration and interpretation of multidimensional, multiscale, and time-dependent datasets, and that can improve geophysical interpretation and its practical application.
We welcome contributions addressing interactive visualisation, 3-D and 4-D representations, data fusion, and the integration of observational, experimental, and modelled data. Contributions combining geophysical data with artificial intelligence and machine learning, including AI-assisted visual analytics and interactive approaches for navigating large and heterogeneous datasets, are particularly encouraged.
The session will also consider practical applications of advanced visualisation across different operational and scientific scenarios. Examples include geophysical applications in engineering and infrastructure monitoring, environmental protection and assessment, natural hazard monitoring and early-warning systems, and the management and interpretation of large and heterogeneous datasets. We also welcome applications to planetary exploration, where observations acquired by spacecraft, landers, rovers, and orbital platforms need to be integrated with geological, geophysical, topographic, and numerical datasets to investigate planetary environments.
By bringing together developments across geophysics, engineering, environmental sciences, natural-hazard research, data science, and planetary exploration, the session will provide a forum to discuss how advanced visualisation can improve the interpretation of complex geophysical datasets and support more effective, transparent, and interactive approaches to understanding the Earth and planetary geophysics.
GI5
Advanced Visualisation and Interpretation of Geophysical Data
Co-organized by EMRP2/ESSI/ESSI1/PS7