Provide an integrated, comprehensive, modular modelling and testing framework
Develop multi-scale workflows applicable beyond the identified test-areas enabling improved physical understanding and progress beyond state-of-the-art in the earthquake process.
Develop and implement 6 DTCs covering earthquake-related aspects over long and short time scales
Test the 6 DTC-E at 4 relevant sites: Euro-Med (SD8), Central Apennines and Alto-Tiberina (SD9), Bedretto Lab (SD10) and the Alps (SD11).
Space: A Digital Twin for GEOphysical extremes (DT-GEO)
SEEK ID: https://workflowhub.eu/projects/181
Funding codes:- 101058129
Public web page: https://dtgeo.eu/
Organisms: No Organisms specified
WorkflowHub PALs: No PALs for this Team
Team created: 1st Aug 2023
Related items
Expertise: Geophysics, Mathematical Modelling, Probabilistic Inversion, Theoretical Seismology
Tools: Python, C++, Mathematical Modelling
Teams: WP8 - Anthropogenic geophysical extremes, WP5 - Volcanoes, WP6 - Tsunamis, WP7 - Earthquakes
Organizations: British Geological Survey

Expertise: metadata, geoinformatics
Tools: Web services
Working on: A Digital Twin for GEOphysical extremes (DT-GEO) ~ https://workflowhub.eu/programmes/36
https://workflowhub.eu/projects/179
https://workflowhub.eu/projects/180
https://workflowhub.eu/projects/181
https://workflowhub.eu/projects/182
Teams: Cluster Emergent del Cervell Humà, Workflows and Distributed Computing, WP6 - Tsunamis, WP7 - Earthquakes, WP8 - Anthropogenic geophysical extremes, WP5 - Volcanoes, Pillar I: Manufacturing, Pillar II: Climate, Pillar III: Urgent computing for natural hazards, eFlows4HPC general, COMPSs Tutorials
Organizations: Barcelona Supercomputing Center (BSC-CNS)

Expertise: Workflows, Programming Models, High Performance Computing, Distributed Computing, Provenance
Tools: COMPSs
Established Researcher at Workflows and Distributed Computing Group, Computer Sciences department, Barcelona Supercomputing Center.
With present computational capabilities and data volumes entering the Exascale Era, digital twins of the Earth system will be able to mimic the different system components (atmosphere, ocean, land, lithosphere) with unrivaled precision, providing analyses, forecasts, and what if scenarios for natural hazards and resources from their genesis phases and across their temporal and spatial scales. DT-GEO aims at developing a prototype for a digital twin on geophysical extremes including earthquakes, ...
Teams: WP5 - Volcanoes, WP6 - Tsunamis, WP7 - Earthquakes, WP8 - Anthropogenic geophysical extremes
Web page: https://dtgeo.eu/
Digitial Twin Component for Earthquakes (DTC-E) WorkFlow 1 (WF7501) uses new data to create a multi-scale model of the Earth, which is used to update the REVEAL/CSEMv3 velocity model. The WF7501 workflow models an inversion-based update process for CSEMv3 (Computational Seismic Earth Model). Below is a simple explanation of the STEPs:
- ST750101 - Data Catalog Update: Collects external data sources and updates the database for further processing.
- ST750102 - Inversion Setup: Configures ...
Digitial Twin Component for Earthquakes (DTC-E) WorkFlow 2 (WF7502) generates synthetic shaking simulations (shakemaps) for seismic sources at different time scales, and automatically incorporates new data as it becomes available.
The workflow consists of multiple steps (ST), datasets (DT), and software services (SS). Below is a simplified breakdown:
Data Ingestion & Preprocessing
- ST750201: Assimilates real-time earthquake data from external sources.
- ST750202: Extracts earthquake ...
Type: Common Workflow Language
Creators: Johannes Kemper, Cedric Bhihe, Georgina Díez
Submitter: Johannes Kemper