ITS – Inter- and Transdisciplinary Sessions
Programme Group Chair: Annegret Larsen
- ITS1 – Digital Geosciences
- ITS2 – Impacts of Climate and Weather in an Inter- and Transdisciplinary context
- ITS3 – Environment and Society in Geosciences
- ITS4 – Risk, Resilience, Mitigation and Adaptation
- ITS5 – General ITS sessions
Proposals are marked in red.
CL | Climate: Past, Present & Future
HS | Hydrological Sciences
NP | Nonlinear Processes in Geosciences
OS | Ocean Sciences
Informing Early Warning, Response, and Governance of Tipping Points and Abrupt Changes in the North Atlantic
NP | Nonlinear Processes in Geosciences
OS | Ocean Sciences
GM | Geomorphology
OS | Ocean Sciences
Suggestion by Jiaxing Ding (22 September 2026)
Art-science collaboration in Earth and environmental research: methods, case studies and lessons
NH | Natural Hazards
BG | Biogeosciences
CR | Cryospheric Sciences
NH | Natural Hazards
SSS | Soil System Sciences
AS | Atmospheric Sciences
Dynamic landscape responses to climate change: identifying physical adaptation limits to geotechnical solutions
NH | Natural Hazards
Freshwater social-ecological systems: feedbacks, thresholds, resilience, and sustainability from local to global scales
BG | Biogeosciences
CL | Climate: Past, Present & Future
NH | Natural Hazards
Excellent Science for Climate Resilience: Connecting Frontier Research, People and Research Infrastructures across Horizon Europe Pillar I
ERE | Energy, Resources and the Environment
ESSI | Earth & Space Science Informatics
GMPV | Geochemistry, Mineralogy, Petrology & Volcanology
Pangeo and DGGS: Enabling FAIR, Open, and Reusable Workflows for Transdisciplinary Digital Earth Science
AS | Atmospheric Sciences
CL | Climate: Past, Present & Future
GI | Geosciences Instrumentation & Data Systems
OS | Ocean Sciences
ERE | Energy, Resources and the Environment
ERE | Energy, Resources and the Environment
NH | Natural Hazards
ESSI | Earth & Space Science Informatics
Science Assessment and Climate Data for Decision-Making: Connecting Knowledge, Risk, and Action Across Scales
ERE | Energy, Resources and the Environment
ITS1 – Digital Geosciences
Proposals are marked in red.
AS | Atmospheric Sciences
NP | Nonlinear Processes in Geosciences
OS | Ocean Sciences
Natural Language Processing and Large Language Models in Geosciences, Natural Hazards and Hydrology
NH | Natural Hazards
BG | Biogeosciences
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
NP | Nonlinear Processes in Geosciences
AI for Critical Mineral Exploration, Characterization, and Sustainable Resource Development
ERE | Energy, Resources and the Environment
Benchmarks for Scientific Machine Learning in the context of Geoscientific Applications
GD | Geodynamics
From autonomous sensing to autonomous science: agentic systems that decide what to measure or simulate next
AS | Atmospheric Sciences
ESSI | Earth & Space Science Informatics
Standing on the shoulders of robotic giants: using pretrained AI models in the geosciences
AS | Atmospheric Sciences
GI | Geosciences Instrumentation & Data Systems
NP | Nonlinear Processes in Geosciences
SM | Seismology
BG | Biogeosciences
CL | Climate: Past, Present & Future
GI | Geosciences Instrumentation & Data Systems
Deep Learning for Subseasonal to Climate Time Scales: Methods, Drivers and Predictability Limits
AS | Atmospheric Sciences
ESSI | Earth & Space Science Informatics
Monitoring the Carbon Cycle with Machine Learning: Opportunities for Science, Policy and Industry
AS | Atmospheric Sciences
ERE | Energy, Resources and the Environment
ESSI | Earth & Space Science Informatics
OS | Ocean Sciences
SSS | Soil System Sciences
CL | Climate: Past, Present & Future
HS | Hydrological Sciences
NH | Natural Hazards
From Open Map to Research Data Infrastructure: Preserving and Using Historical OpenStreetMap Data
G | Geodesy
Ocean Digital Twins for Coastal Resilience and a Sustainable Blue Economy in Future Climates
CL | Climate: Past, Present & Future
NP | Nonlinear Processes in Geosciences
Subsurface energy and environmental systems like geothermal energy systems, geological carbon storage, underground hydrogen storage, groundwater flow systems, etc., play a vital role for mitigating climate change and achieving net-zero. At the same time, their complex, heterogeneous, multiscale, and uncertain nature presents major challenges for modelling, prediction, monitoring, and decision-making, particularly in multiphysics and multiscale model coupling, data integration, and real-time monitoring and control.
Artificial intelligence (AI) and scientific machine learning (SciML) are creating new opportunities to address these challenges. This session aims to bring together researchers from geoscience, hydrology, subsurface energy, computational science, and AI to discuss recent advances at the interface between these fields. We invite contributions on the development and application of AI and SciML methods for subsurface energy and environmental systems. Topics include, but are not limited to, physics-informed machine learning, neural operators, reduced-order modelling, surrogate and generative modelling, multimodal data fusion, digital twins, explainable and trustworthy AI, large language models, and agentic AI.
The session will provide a platform for interdisciplinary exchange on emerging methods, practical applications, current limitations, and future research directions.
ITS2 – Impacts of Climate and Weather in an Inter- and Transdisciplinary context
Proposals are marked in red.
CL | Climate: Past, Present & Future
AS | Atmospheric Sciences
OS | Ocean Sciences
Human health risks in a changing climate: observed impacts, adaptation and future risks
NH | Natural Hazards
AS | Atmospheric Sciences
CL | Climate: Past, Present & Future
Climate impacts on agriculture: from climatic drivers and constraints on productivity to adaptation options and future risks
BG | Biogeosciences
CL | Climate: Past, Present & Future
Suggestion by Puyu Feng (22 September 2026)
Keywords
Keywords
Advances in physical climate risk assessment for the financial and insurance sectors
CL | Climate: Past, Present & Future
HS | Hydrological Sciences
NH | Natural Hazards
AS | Atmospheric Sciences
CL | Climate: Past, Present & Future
OS | Ocean Sciences
Weather and climate extremes impacts on ecosystems: Disturbance regimes, vulnerability, and resilience
CL | Climate: Past, Present & Future
NH | Natural Hazards
Bridging natural and social sciences to study societal responses to extreme events
CL | Climate: Past, Present & Future
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
NH | Natural Hazards
OS | Ocean Sciences
Adaptation failures on a hotter planet - Socio-technological interactions as mediators of physical climate risks.
CL | Climate: Past, Present & Future
NH | Natural Hazards
From Planetary Boundaries to the Basin Scale: Operational Nexus Approaches for Water Security under Climate Change
CL | Climate: Past, Present & Future
Causes and consequences of weather and climate extremes: From physical drivers to systemic risks
AS | Atmospheric Sciences
NH | Natural Hazards
Mediterranean climate extremes: bridging processes, impacts, risks and pathways to resilience
CL | Climate: Past, Present & Future
ITS3 – Environment and Society in Geosciences
Proposals are marked in red.
Integrating Field Data, Research, Enterprises, and Stakeholders for Environmental Protection and Sustainable Territorial Development
GM | Geomorphology
AS | Atmospheric Sciences
BG | Biogeosciences
HS | Hydrological Sciences
The environmental dimensions of armed conflict: social-ecological impacts in crisis-affected landscapes
NH | Natural Hazards
From Earth observation to decision-grade nature information: biophysical indicators for nature finance and ecosystem accounting
ESSI | Earth & Space Science Informatics
ERE | Energy, Resources and the Environment
Cultural Geology and Geomythology: Exploring the Human Meanings of Geodiversity and Geoheritage
GM | Geomorphology
CL | Climate: Past, Present & Future
ERE | Energy, Resources and the Environment
Earth Observation (EO) offers a powerful means of monitoring changes in climate, ecosystems, and human environments at both global and local scales. These observations generate a wide array of climate and environmental variables, and they are delivered as Analysis-Ready Data (ARD). While ARD is globally accessible and scientifically robust, it might lack the specificity and contextual relevance required to effectively address local challenges. To bridge this gap, ARD must be transformed into Action-Ready Information (ARI): tailored data products and insights that support local decision-making and reflect community priorities. This transformation depends on co-creation, a collaborative process involving local communities, scientists, engineers, policymakers, and private sector stakeholders. For example, by integrating satellite EO with locally collected data from ground, water, and airborne platforms, we can enhance data granularity, validate satellite outputs, and generate customized, equitable, and actionable solutions. This session will explore how data can be harnessed to support environmental monitoring, local climate mitigation and adaptation, and sustainable development. It will emphasize the importance of identifying gaps between global datasets and local needs, and present strategies to close these gaps through innovation (e.g. new technologies and open FAIR science), inclusive engagement, and capacity building. Economic and policy dimensions will also be addressed, including the sustainability of community-led initiatives, the role of citizen science, funding mechanisms, and scalable technologies that enhance data utility for local solutions. The practical implementation challenges confronting policymakers when seeking to engage with EO data, particularly in the context of constrained policy capacities, will also be discussed. We invite participants from across/around the EO ecosystem: researchers in both physical and social sciences, community leaders, and stakeholders from policy and business sectors. We do not limit us only to satellite EO. We do consider non-EO observations and data, and their applications. We will share case studies, identify synergies between global and local efforts, and co-create knowledge that informs both local action and global strategies. By synthesizing diverse experiences, this session aims to advance EO as a tool for addressing the interconnected climate and environmental challenges we face locally and globally.
ITS4 – Risk, Resilience, Mitigation and Adaptation
Proposals are marked in red.
GM | Geomorphology
HS | Hydrological Sciences
OS | Ocean Sciences
Nature-based coastal solutions: integrating geoscience, engineering, and societal perspectives on successes, failures, and future uncertainties
NH | Natural Hazards
NH | Natural Hazards
From Capacity Development to Lasting Impact: Advancing African–European Partnerships for Climate Resilience
CL | Climate: Past, Present & Future
Suggestion by Liang Emlyn Yang (22 September 2026)
Interdisciplinary approaches to addressing complex climate risks related to extreme weather events
NH | Natural Hazards
Inequality and justice in climate risk and adaptation: bridging impact analysis and socio-economic assessment
ERE | Energy, Resources and the Environment
NH | Natural Hazards
HS | Hydrological Sciences
NP | Nonlinear Processes in Geosciences
Compound Extreme Weather and Climate Events and Urban Resilience: From Hazard Interactions to Adaptive Solutions
CL | Climate: Past, Present & Future
Suggestion by Liang Emlyn Yang (22 September 2026)
CL | Climate: Past, Present & Future
BG | Biogeosciences
CL | Climate: Past, Present & Future
HS | Hydrological Sciences
Suggestion by Liang Emlyn Yang (22 September 2026)
CL | Climate: Past, Present & Future
Suggestion by Liang Emlyn Yang (22 September 2026)
Compound and Cascading Landslide and Earthquake-Triggered Ground-Failure Events: Rapid Response, Monitoring, and Environmental Vulnerability in 2026
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
SM | Seismology
Compound and Cascading Landslide and Earthquake-Triggered Ground-Failure Events: Rapid Response, Monitoring, and Environmental Vulnerability in 2026
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
SM | Seismology
CL | Climate: Past, Present & Future
NH | Natural Hazards
Advances in Landslide Investigation and Mitigation: Bridging Research and Engineering Geology Practice
GM | Geomorphology
Sinking, shrinking and saltier river deltas and coastal plains: interacting processes, hazards, impacts, knowledge gaps, and opportunities for adaptation
GM | Geomorphology
HS | Hydrological Sciences
NP | Nonlinear Processes in Geosciences
Pathways to Resilient and Multi-Functional Forests: Climate, Water, Biodiversity and Social-Ecological Benefits and Trade-Offs
CL | Climate: Past, Present & Future
Suggestion by Liang Emlyn Yang (23 September 2026)
Probabilistic resilience mapping to flooding of urban multi-infrastructure systems
CL | Climate: Past, Present & Future
Suggestion by Liang Emlyn Yang (23 September 2026)
BG | Biogeosciences
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
HS | Hydrological Sciences
GI | Geosciences Instrumentation & Data Systems
AS | Atmospheric Sciences
Rethinking resilience in exposed territories: from vulnerability and risk to transformative pathways
CL | Climate: Past, Present & Future
HS | Hydrological Sciences
Suggestion by Liang Emlyn Yang (23 September 2026)
Suggestion by Liang Emlyn Yang (23 September 2026)
Nature-based solutions for climate-resilient landscapes: from evidence to effective implementation
BG | Biogeosciences
Uncertain times: Drawing decision-relevant conclusions from modelled climate risks
NH | Natural Hazards
Quantifying, Modeling and Communicating Uncertainty in Climate-Informed Decision-Making
NH | Natural Hazards
The hazard is the sequence: path dependency and cascading risk in multi-hazard settings
GM | Geomorphology
HS | Hydrological Sciences
Mainstreaming Nature-based Solutions for the EU Water Resilience Strategy: evidence, lessons and achievements.
CL | Climate: Past, Present & Future
High-Resolution Climate Information for Societal Risk Assessment: Health, Food Systems, Water Resources, and Community Vulnerability
NH | Natural Hazards
ITS5 – General ITS sessions
Proposals are marked in red.
CL | Climate: Past, Present & Future
GMPV | Geochemistry, Mineralogy, Petrology & Volcanology
The plastic-environment interface: surface alteration and its consequences for environmental behaviour, transport, and impacts
SSP | Stratigraphy, Sedimentology & Palaeontology
GMPV | Geochemistry, Mineralogy, Petrology & Volcanology
TS | Tectonics & Structural Geology
Polycrystalline Materials in Motion: Linking Microstructure, Rheology and Large-Scale Flow
CR | Cryospheric Sciences
GMPV | Geochemistry, Mineralogy, Petrology & Volcanology
TS | Tectonics & Structural Geology
AS | Atmospheric Sciences
Building the Open Hydrology Community: Open-Source Tools, Models and Reproducible Workflows
NH | Natural Hazards
AS | Atmospheric Sciences
CL | Climate: Past, Present & Future
GM | Geomorphology
GMPV | Geochemistry, Mineralogy, Petrology & Volcanology
NH | Natural Hazards
CL | Climate: Past, Present & Future
When Numbers Change Meaning: How Compositional Data Analysis Transforms Our View of the Earth
SSP | Stratigraphy, Sedimentology & Palaeontology
From Essential to Actionable: Linking Research Infrastructures, Earth Observations and Climate Services
OS | Ocean Sciences
Rotational Ground Motions: Harnessing Six-Component Wavefields from Earthquake Science to Infrastructure Monitoring
NH | Natural Hazards
EMRP | Earth Magnetism & Rock Physics
Bridging Land and Sea: Vertical Reference Integration across Geodesy, Hydrography, and Coastal Oceanography
HS | Hydrological Sciences
NH | Natural Hazards
OS | Ocean Sciences
Antarctic Geosphere Evolution (AGE): Linking Lithosphere, Ice Sheets, Oceans, Ecosystems and Climate
BG | Biogeosciences
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
G | Geodesy
GM | Geomorphology
HS | Hydrological Sciences
SM | Seismology
SSP | Stratigraphy, Sedimentology & Palaeontology
TS | Tectonics & Structural Geology
CL | Climate: Past, Present & Future
Navigating the Anthropocene towards habitability: linking research on Earth system processes and societal dynamics, values and policies
CL | Climate: Past, Present & Future