GS – Geoscience & Society

Programme Group Chairs: John K. Hillier, Caitlyn Hall

Proposals are marked in red.

Session short summary:
Environmental challenges are human challenges. To understand them requires connecting environmental science with society, culture, and policy. By bringing disciplines, data, and people together, we can turn knowledge into sustainable solutions and meaningful climate action.
Keywords: Environmental changes (Environmental variability), Science communication - policy, Societal impact
Co-organization suggestions:
CL0 | Inter- and Transdisciplinary Sessions
Session short summary:
This session explores how land systems can support climate resilience through spatial planning and governance across scales. We welcome studies on land-system change, climate risks, ecosystem services, nature-based solutions, spatial inequalities, cross-boundary governance, and science-based pathways for resilient and sustainable development.
Keywords: Climate change - adaptation, Land use, Resilience, Sustainable land management (SLM)
Co-organization suggestions:
NH11 | Climate Hazards
Session short summary:
We seek contributions to bridge the geoscience-society impact gap through two pathways: (1) societally impactful capacity-building and education; and (2) stakeholder- and demand-driven research, from co-design to tailored implementation. We welcome case studies and theories across disciplines to contribute to co-production, exchange, networking, and synthesis.
Keywords: Participatory science, Research coordination, Scientific community, Societal impact, outreach
Convener suggestion: Theresia Bilola
Session short summary:
Energy transitions are reshaping patterns of resource extraction, technology production, infrastructure and trade. This session connects work on critical raw materials, clean technologies and value chains to questions of resilience, environmental impacts, industrial strategy, geopolitics, and how risks and opportunities are distributed across regions. (this was as an ITS session at EGU26)
Keywords: Climate change - mitigation, Mineral resources, Renewable energy, Resilience, Sustainability
Co-organization suggestions:
CL3.2 | Future Climate – Climate and Society
ERE6 | Inter- and Transdisciplinary Sessions (ITS)
Session short summary:
This section welcomes experiences of inclusion of traditional and indigenous knowledge in geosciences, including reflections on the governance and management of indigenous data.
Keywords: Data access, Participatory science, Societal impact, Socio-ecological system
Session short summary:
Rapid urban growth is reshaping water–heat–land relations in arid cities. Irrigated greening can relieve heat but raise water demand, while short, intense storms may cause flooding in otherwise water-limited settings. This session brings together studies on these coupled risks and adaptation strategies using observations, modelling, and comparative case studies.
Keywords: Arid and semi-arid environments, Climate change - adaptation, Urban climate, Urban planning
Co-organization suggestions:
CL | Climate: Past, Present & Future
HS | Hydrological Sciences
NH | Natural Hazards
GI2

In recent years, technologies based on Artificial Intelligence (AI), such as image processing, smart sensors, and intelligent inversion, have garnered significant attention from researchers in the geosciences community. These technologies offer the promise of transitioning geosciences from qualitative to quantitative analysis, unlocking new insights and capabilities previously thought unattainable.
One of the key reasons for the growing popularity of AI in geosciences is its unparalleled ability to efficiently analyze vast datasets within remarkably short timeframes. This capability empowers scientists and researchers to tackle some of the most intricate and challenging issues in fields like Geophysics, Seismology, Hydrology, Planetary Science, Remote Sensing, and Disaster Risk Reduction.
As we stand on the cusp of a new era in geosciences, the integration of artificial intelligence promises to deliver more accurate estimations, efficient predictions, and innovative solutions. By leveraging algorithms and machine learning, AI empowers geoscientists to uncover intricate patterns and relationships within complex data sources, ultimately advancing our understanding of the Earth's dynamic systems. In essence, artificial intelligence has become an indispensable tool in the pursuit of quantitative precision and deeper insights in the fascinating world of geosciences.
For this reason, aim of this session is to explore new advances and approaches of AI in Geosciences.

Co-organized by AS5/BG2/BG10/CL5/CR6/CR7/EMRP/ERE/ESSI/ESSI1/G1/GD5/GM/GMPV12/GS/GS4/HS/NH6/NP/NP4/OS/PS/SM9/SSP1/SSS/ST/TS10
Convener: Andrea Vitale | Co-conveners: Ivana VentolaECSECS, Luigi BiancoECSECS, Giacomo RoncoroniECSECS
NP3

The Navier-Stokes equations, initially formulated in the early 19th century, have since become the cornerstone of fluid mechanics, subsequently extending their relevance to fluid geophysics. The existence and regularity of their solutions pose a significant challenge within a substantial domain of geophysics.

Over the years, a series of partial results have been obtained, particularly in the pursuit of proving one of the four statements proposed by Charles L. Fefferman for the Millennium Clay Prize. A definitive proof of the third statement regarding the breakdown of the Navier-Stokes equations was unveiled by OpenAI on September 8th, utilising extensive IA resources. This revelation has sparked a substantial debate, encompassing various aspects such as the physical significance of the blowing-up singularity, the utilisation of intensive AI resources in disruptive research, and the connections with concepts like intermittency, cascades, multifractals and enstrophy catastrophe. It may also inspire new approaches to resolve fundamental questions of geosciences.

This PICO session seeks to provide the geophysical community with an opportunity to contribute to this ongoing discourse.

Co-organized by AS/GS/HS/NH/OS, co-sponsored by AGU and AOGS
Convener: Daniel Schertzer | Co-conveners: Shaun Lovejoy, Ioulia Tchiguirinskaia

GS10 –  Climate Resilience and Sustainability

Sub-Programme Group Scientific Officer: Liang Emlyn Yang

CL3.2

Earth resilience is the capacity of the intertwined human-Earth system to resist, recover, and regenerate back to a Holocene-like and habitable functioning in response to human pressures. A deeper understanding of Earth system resilience is key to charting safe operating spaces for prosperous and equitable future human development. Recent assessments of Earth system integrity highlight the deteriorating resilience of our planet, with planetary-scale human pressures (such as greenhouse gas emissions and land-use change) pushing the Earth system into the uncharted territory of the Anthropocene. Of particular concern are risks of triggering nonlinear changes in large-scale components of the Earth that can undergo abrupt, often irreversible state shifts once critical thresholds are crossed. Examples include the Greenland ice sheets, the Atlantic Meridional Overturning Circulation, and major ecosystems such as the Amazon rainforest. Their interactions may trigger tipping cascades, where the destabilization of one element increases the risk of others tipping, thereby amplifying Earth system change and undermining long-term Earth resilience.

The Earth system’s future trajectory is now co-shaped by human–Earth system feedbacks, where human activities both drive and respond to biophysical change. Fossil fuel use, deforestation, and land-use intensification contribute to destabilizing Earth system dynamics, while societal responses - such as mitigation policies, technological innovation, or behavioral shifts - can either reinforce unsustainable trajectories or create stabilizing feedbacks. In this context, research is uncovering the potential for social tipping dynamics, which could accelerate decarbonization and foster transformative pathways towards global sustainability to revitalize and regenerate Earth resilience.

We invite contributions on all topics relating to Earth resilience, planetary boundaries, safe operating spaces, tipping points in the Earth system, positive (social) tipping, as well as their interactions and potential domino effects. We welcome studies that use Earth system modelling, integrated human-Earth system models, from conceptual approaches to data-driven analysis to investigate nonlinear dynamics, abrupt shifts, and tipping points, as well as contributions exploring social transformation processes and their role in shaping a more sustainable future for people and the planet.

Co-organized by GS10/GS6
Convener: Jonathan Donges | Co-conveners: Eric Galbraith, Lan Wang-Erlandsson, Nico WunderlingECSECS

GS0 –  Bottom up: Sub-division(s) will be created to reflect sessions submitted 

Sub-Programme Group Scientific Officer: Kyra Hagge

Proposals are marked in red.

Session short summary:
This session explores how hydrological knowledge has developed, changed and been transmitted over time, and how historical, traditional and indigenous knowledge can inform current hydrology, sustainable water management and the teaching of future generations.
Keywords: Modelling - Hydrology, Science communication - history, Water cycle
Co-organization suggestions:
HS1.1 | Teaching hydrology
Session short summary:
This session explores how various actors develop resilience capacities to climate risks. We welcome interdisciplinary research on resilience assessment, innovative technologies, modelling, nature-based solutions, governance, community resilience, equity, local knowledge, and adaptation pathways. Comparative, methodological, theoretical, and empirical contributions are encouraged.
Keywords: Climate change - adaptation, Climate change - societal impact, Disaster risk management, Eurasia, Resilience
Co-organization suggestions:
CL3.2 | Future Climate – Climate and Society
NH9 | Natural Hazards & Society
Session short summary:
How do resilience indicators translate into governance decisions? This session bridges quantitative measurement, qualitative governance analysis, and cross-national comparison, with attention to ageing populations and compound climate–demographic pressures from household to national scale.
Keywords: Climate change - adaptation, Vulnerability/damage assessment
Session short summary:
This session looks at integrative climate resilience by mixing GeoAI, Earth Observation and hydrological modeling with Nature-Based Solutions (NbS) and community resilience. We seek global case studies linking technological innovation, ecosystem-based adaptation, socioeconomic vulnerability, and science-policy decision-making in urban and rural landscapes.
Keywords: Climate change - adaptation, Ecological adaptation, Flood hazard (Flood risk), Precipitation remote sensing (Rainfall remote sensing), Vulnerability/damage assessment
Session short summary:
This session brings together advances in geoscientific visualization and interaction, with emphasis on 3D, multiscale and time-dependent data. We welcome new tools, workflows and applications using web-based, immersive or interactive environments to improve scientific interpretation, communication, education and decision-making.
Keywords: Big data - visualisation, Education, Science communication - public, Visualization - 3D, Visualization - interactive
Co-organization suggestions:
AS | Atmospheric Sciences
ESSI4 | Advanced Technologies and Informatics Enabling Transdisciplinary Science
GD5 | Modelling, Inversion, Data Assimilation, Multiscale and Multiphysics Methods for Geodynamics 
GM | Geomorphology
PS | Planetary & Solar System Sciences
TS | Tectonics & Structural Geology
Session short summary:
This session explores how AI, GeoAI, spatial-temporal data, machine learning, digital twins, and integrated modelling can advance climate resilience. We welcome research on resilience assessment, prediction, human behaviour, adaptive capacity, and AI-supported adaptation, with a focus on translating data-driven insights into actionable and sustainable climate-resilience solutions.
Keywords: Artificial Intelligence, Climate change - adaptation, Climate change - societal impact, Resilience
Co-organization suggestions:
HS5 | Water and society
NH9 | Natural Hazards & Society
Session short summary:
This session focuses on systemic resilience to multi-hazards, including compound, concurrent and cascading events. We welcome work on how resilience is built, measured and strengthened across interconnected systems, with particular attention to households and communities, and to the mechanisms and interventions shaping preparedness, recovery and adaptation.
Keywords: Disaster risk management, Multi-hazard (management, assessments, models), Resilience
Session short summary:
How can biodiversity goals and climate resilience be advanced together? This session connects integrated risk frameworks, Earth observation and modelling, nature-based solutions, governance innovations and global case studies to identify synergies, trade-offs and pathways towards ecological security and just, climate-resilient development.
Keywords: Biodiversity, Climate change - adaptation, Resilience, Risk management, Science policy
Co-organization suggestions:
BG | Biogeosciences
CL | Climate: Past, Present & Future

GS1 –  Science Communication, Engagement & Outreach

Sub-Programme Group Scientific Officer: Roberta Bellini

Proposals are marked in red.

Session short summary:
This session explores how climate and ocean science is communicated, learned and interpreted across society. We welcome research and practice on literacy, education, science communication, public engagement, misinformation, trust, uncertainty and geoethics, examining how knowledge can inform societal responses to climate and ocean change.
Keywords: Climate change - ocean, Climate change - societal impact, Education, Science communication - public, outreach
Co-organization suggestions:
CL3.2 | Future Climate – Climate and Society
OS1 | Ocean Circulation and Climate
Description suggestion: This session ex[…]
Convener suggestion: Lucia Gutierrez-Loza, Janne-Markus Rintala
Session short summary:
As climate action urgency grows, so does the need for a climate-literate population. This session explores how scientists, educators and communicators can collaborate to counter mis/disinformation, build critical thinking, and deliver high-quality climate education — balancing concern with hope and agency.
Keywords: Education, Science communication - policy, Science communication - public, Science communication - teaching, Teaching
Session short summary:
Science communication seeks to connect science with the public to foster dialogue, awareness, and empowered informed choices. This session invites presentations on earth and space science communication practice, research, evaluation and reflection, addressing methods, challenges, strategies, and lessons from long-term, innovative or impactful engagement.
Keywords: Science communication - media, Science communication - policy, Science communication - public, Science communication - teaching, outreach
Co-organization suggestions:
CR7 | The Cryosphere in the Earth system: interdisciplinary topics
GM3 | Geomorphology, extreme events, and hazards
HS5 | Water and society
OS | Ocean Sciences
PS | Planetary & Solar System Sciences
SSP2 | Stratigraphy, Earth Systems History and Climate Geology
Session short summary:
Can you say what you study using only the ten hundred most used words? In this get-together, we ask you to give a short talk on your work using only those easy words (like in this writing). It is hard at first, but it shows the heart of what you do and lets you tell it to anyone. Come and learn what others do!
Keywords: Science communication - public, outreach
Convener suggestion: Theresia Bilola
Session short summary:
Scientific publishing is rapidly evolving, raising questions about governance, quality, incentives, openness and sustainability. Researchers are not passive users but key actors shaping this ecosystem. This session explores how the geoscience community can build more open, rigorous, equitable and sustainable scholarly communication through collective action and innovation.
Keywords: Open Science, Scientific communication - publishing, Scientific community
Suggested session
Games for Geoscience
Session short summary:
Games are a powerful tool for engagement and education. They are also fun. This means they get used, in many formats and for many purposes, across the full spectrum of geoscience. In this session, geoscientists share how they are using games in their work, both serious and not so serious.
Keywords: Participatory science, Risk communication, Science communication - media, Science communication - public, Science communication - teaching
Session short summary:
How can geoscientists capture attention on social media without sacrificing scientific nuance? This session explores practical strategies and creative approaches to communicating geosciences, reaching diverse audiences and building trust beyond academia. We welcome successes, experiments, and lessons learned with a focus on meaningful understanding and impact beyond algorithmic success.
Keywords: Climate change - societal impact, Science communication - public, Science communication - social media, outreach
Session short summary:
The session aims at collecting relevant experiences on geoheritage including geological sites, heritage stones, and geological collections.
Keywords: Digital infrastructure, Geoheritage, Management, Science communication - public, outreach
Session short summary:
This session brings together interactive approaches to public engagement and citizen science in the geosciences, including exhibitions, digital and immersive experiences, games and hands-on activities. We welcome contributions on both finished projects and work in progress, with a focus on sharing practical experiences, lessons learned and ideas for collaboration.
Keywords: Science communication - media, Visualization - interactive, outreach
Session short summary:
This session invites talks on how educators and communicators balance analogue and digital approaches across Earth system science education and engagement.
Keywords: Education, Science communication - public, Science communication - teaching, outreach
Session short summary:
Learn about the Mission Earth project, funded through the EGU Special Activity Fund, which empowered youth with the skills to share their own geoscience-centric stories through video.
Keywords: Education, Science communication - teaching, Student training
Session short summary:
This session is aimed to showcase and share good practices developed at Geoparks with a good track-record of geoscience outreach and public engagement.
Keywords: Geoheritage, Science communication - public, outreach
Convener suggestion: Elena Marrocchino
Session short summary:
This session invites the EGU community to explore how the General Assembly could evolve. We welcome ideas, experiences, experiments, and evidence on improving presentation formats, scheduling, networking, accessibility, online participation, and scientific interaction. The goal is to move beyond identifying problems and develop practical, community-driven solutions.
Keywords: Diversity, Research coordination, Science management, Scientific community
Session short summary:
The session focuses on how virtual, augmented, and mixed reality can support geoscience research, education, outreach, and communication. It welcomes applications ranging from virtual field experiences and 3D model interaction to immersive data analysis, citizen science, and collaborative research.
Keywords: Digital infrastructure, Education, Geoheritage, Science communication - public, outreach
Session short summary:
This PICO session explores innovative digital and non-digital approaches to hazard and risk education and communication, examining how they can connect research, policy and practice. It welcomes work spanning formal education, public engagement, professional training and policy development, particularly on co-production, inclusivity, evaluation and evidence-informed decision-making.
Keywords: Anthropogenic hazard, Risk communication, Risk/hazard scenarios modeling and forecasting, Science communication - policy, Science communication - teaching
Co-organization suggestions:
GM3 | Geomorphology, extreme events, and hazards
HS1.1 | Teaching hydrology
NH9 | Natural Hazards & Society
Session short summary:
Responsible science communication conveys the challenges of managing uncertainty that is inherent in measurements, input data, and model outputs. This session invites presentations on communicating scientific uncertainty to different audiences in order to inform and advance the effective communication of uncertainty in earth and space science.
Keywords: Model uncertainty, Risk communication, Science communication - media, Science communication - policy, Science communication - public
Co-organization suggestions:
CL3.2 | Future Climate – Climate and Society
CR4 | Frozen ground, debris-covered glaciers and geomorphology
GM3 | Geomorphology, extreme events, and hazards
GMPV11 | Volcano! - hazards, monitoring, human response, mitigation and risk
HS5.1 | Water Resources Policy and Management under Uncertainty
NH9 | Natural Hazards & Society
PS | Planetary & Solar System Sciences
SM8 | Seismic Hazard (earthquake forecasting, engineering seismology, seismic and multi-hazard assessment)
SSS1 | History, Education and Society of Soil Science
TS8 | Applications of Tectonics and Structural Geology to Energy Transition, Natural Hazards, and Societal Needs
Session short summary:
This session deals with the interface between art and science. It focuses on how they can come together to make science more accessible to the general public as well as how together they can be used to co-create a new artistic language.
Keywords: Art, Science communication - public
Session short summary:
Climate and environmental scientists increasingly engage in public and political life beyond their research — through communication, expertise, advocacy, and more. This session invites contributions documenting or reflecting on these forms of engagement and the tensions they raise (neutrality, academic freedom, credibility), and seeks to connect engaged initiatives across Europe.
Keywords: Geoethics, Science communication - public, Science policy, Scientific community, Societal impact

GS2 –  Higher Education Teaching & Research

Sub-Programme Group Scientific Officer: Solmaz Mohadjer

Proposals are marked in red.

Session short summary:
Earth and Environmental Science students need to know how to code, but few develop these skills as a part of their degree studies. In this session, we will highlight a variety of proven approaches to developing computing skills and using them to enhance learning in Earth and Environmental Science higher education. An accompanying short course will include hands-on demonstrations of the approaches.
Keywords: Artificial Intelligence, Data Science, Education, Programming language, Science communication - teaching
Co-organization suggestions:
AS6 | Short Courses
Session short summary:
In this session we encourage contributions of interest within the Higher Education community involving teaching of geoscience and related fields. Our intent is to foster international discourse on common challenges and strategies for people teaching in higher education - let's share, discuss, reflect and develop effective practice and educational scholarship.
Keywords: Education, Science communication - teaching, Teaching
Convener suggestion: Elizabeth Petrie, Zoltán Erdős, Olli Varis
Session short summary:
Fieldwork is an essential part of geographic research and crucial in the discovery of new knowledge. However, even comprehensive planning cannot avert unforeseen challenges with nature or technology. This session will crowdsource solutions to minimise the impact of these unforeseen challenges on the success of field data collection. 
Keywords: Education, Research coordination

GS3 –  Equality, Diversity & Inclusion

Sub-Programme Group Scientific Officer: Anita Di Chiara

Proposals are marked in red.

Session short summary:
This session explores equity, diversity and inclusion (EDI) in the geosciences, addressing barriers to participation and representation across gender, race, culture, disability, background, geography and career stage.
Keywords: Diversity, Equality, inclusion
Session short summary:
This session explores women’s diverse experiences in geosciences and the challenges they face throughout their careers. It welcomes perspectives on institutional practices, fieldwork, leadership, and inclusivity, aiming to foster dialogue, raise awareness, and inspire actions toward greater gender equity and diversity.
Keywords: Diversity, Equality, inclusion

GS4 –  Geoethics and Open Science

Sub-Programme Group Scientific Officer: Anouk Beniest

Proposals are marked in red.

Session short summary:
This session explores how geoethics can foster responsible practices, decisions, and policies in the geosciences. It welcomes theoretical and applied contributions on the ethical, social, and cultural dimensions of geoscience, including climate change, risks, georesources, education, data and AI, research integrity, inclusion, Indigenous knowledge, and international cooperation.
Keywords: Education, Geoethics, Science communication - public, Science policy, Sustainability
Co-organization suggestions:
BG8 | Biogeosciences, Policy and Society
CL3.2 | Future Climate – Climate and Society
ERE | Energy, Resources and the Environment
GM4 | Humans, life, and landscapes
HS5 | Water and society
NH9 | Natural Hazards & Society
SSS12 | Soil Policy and Legislation
Session short summary:
Scientific software underpins modern geoscience, but limited attention to its development can compromise reproducibility, traceability, reuse and collaboration. This session addresses good practices in software design, documentation, testing, version control, portability and data workflows, including the opportunities and challenges of AI tools.
Keywords: Artificial Intelligence, Open Science, Open source computation, Software
Co-organization suggestions:
AS3 | Atmospheric Composition, Chemistry and Aerosols
BG9 | Earth System Remote Sensing and Modelling
CL5 | Tools for Climate Studies
CR6 | Instrumental and paleo-archive observations, analyses, and data-driven methods in the cryospheric sciences
ESSI2 | Data, Software and Computing Infrastructures across Earth and Space Sciences
GD5 | Modelling, Inversion, Data Assimilation, Multiscale and Multiphysics Methods for Geodynamics 
GI2 | Data networks and analysis
GMPV12 | Computational modelling and machine learning for GMPV processes and data
HS3 | Hydroinformatics
NH6 | Remote Sensing, AI, data science & Hazards
NP4 | Time Series and Big Data Methods
SM2 | Computational, Theoretical and Data-Intensive Seismology
SSS10 | Digital Soils
Session short summary:
Great tools exist for reproducible geoscience, yet making open science a daily habit remains a struggle. The roadblock isn't technical, it's cultural. We will explore the intersection of tooling and the human side of reproducibility: from systemic incentives and equity to the vulnerability of sharing artifacts. Share your strategies, frameworks, or honest stories of reproducibility failures!
Keywords: GIS (Geographical Information System), Open Science, Open source computation, Societal impact
Co-organization suggestions:
ESSI3 | Open Science Informatics for Earth and Space Sciences
Session short summary:
Geopolitics profoundly influences science by directing funding, collaboration, and knowledge valuation. Geoscientists face urgent ethical dilemmas due to their work's societal impact, from dual-use satellite technologies to neocolonial resource exploitation. As a result, the increasing securitization of scientific practice raises serious ethical, social, and environmental questions.
Keywords: Disaster risk management, Geoethics, Science policy, Societal impact
Session short summary:
Scientific software is central to modern open science and is built collaboratively by researchers and research technical professionals (RTPs). We invite talks on researcher-RTP engagement (successes and failures), cross-domain software reuse, open software, FAIR and reproducible research, and policy topics such as funding, teams, and careers. Submissions are welcome from academia and industry.
Keywords: Data Science, Digital infrastructure, Open source computation, Software, Sustainability
Co-organization suggestions:
AS | Atmospheric Sciences
BG | Biogeosciences
CL | Climate: Past, Present & Future
CR | Cryospheric Sciences
EMRP | Earth Magnetism & Rock Physics
ERE | Energy, Resources and the Environment
ESSI | Earth & Space Science Informatics
G | Geodesy
GD | Geodynamics
GI | Geosciences Instrumentation & Data Systems
GM | Geomorphology
GMPV | Geochemistry, Mineralogy, Petrology & Volcanology
HS | Hydrological Sciences
NH | Natural Hazards
NP | Nonlinear Processes in Geosciences
OS | Ocean Sciences
PS | Planetary & Solar System Sciences
SM | Seismology
SSP | Stratigraphy, Sedimentology & Palaeontology
SSS | Soil System Sciences
ST | Solar-Terrestrial Sciences
TS | Tectonics & Structural Geology
GI2

In recent years, technologies based on Artificial Intelligence (AI), such as image processing, smart sensors, and intelligent inversion, have garnered significant attention from researchers in the geosciences community. These technologies offer the promise of transitioning geosciences from qualitative to quantitative analysis, unlocking new insights and capabilities previously thought unattainable.
One of the key reasons for the growing popularity of AI in geosciences is its unparalleled ability to efficiently analyze vast datasets within remarkably short timeframes. This capability empowers scientists and researchers to tackle some of the most intricate and challenging issues in fields like Geophysics, Seismology, Hydrology, Planetary Science, Remote Sensing, and Disaster Risk Reduction.
As we stand on the cusp of a new era in geosciences, the integration of artificial intelligence promises to deliver more accurate estimations, efficient predictions, and innovative solutions. By leveraging algorithms and machine learning, AI empowers geoscientists to uncover intricate patterns and relationships within complex data sources, ultimately advancing our understanding of the Earth's dynamic systems. In essence, artificial intelligence has become an indispensable tool in the pursuit of quantitative precision and deeper insights in the fascinating world of geosciences.
For this reason, aim of this session is to explore new advances and approaches of AI in Geosciences.

Co-organized by AS5/BG2/BG10/CL5/CR6/CR7/EMRP/ERE/ESSI/ESSI1/G1/GD5/GM/GMPV12/GS/GS4/HS/NH6/NP/NP4/OS/PS/SM9/SSP1/SSS/ST/TS10
Convener: Andrea Vitale | Co-conveners: Ivana VentolaECSECS, Luigi BiancoECSECS, Giacomo RoncoroniECSECS
GS4

Sitting under a tree, you feel the spark of an idea, and suddenly everything falls into place. The following days and tests confirm: you have made a magnificent discovery — so the classical story of scientific genius goes…

But science as a human activity is error-prone, and might be more adequately described as "trial and error". Handling mistakes and setbacks is therefore a key skill of scientists. Yet, we publish only those parts of our research that did work. That is also because a study may have better chances to be accepted for scientific publication if it confirms an accepted theory or reaches a positive result (publication bias). Conversely, the cases that fail in their test of a new method or idea often end up in a drawer (which is why publication bias is also sometimes called the "file drawer effect"). This is potentially a waste of time and resources within our community, as other scientists may set about testing the same idea or model setup without being aware of previous failed attempts.

Thus, we want to turn the story around, and ask you to share 1) those ideas that seemed magnificent but turned out not to be, and 2) the errors, bugs, and mistakes in your work that made the scientific road bumpy. In the spirit of open science and in an interdisciplinary setting, we want to bring the BUGS out of the drawers and into the spotlight. What ideas were torn down or did not work, and what concepts survived in the ashes or were robust despite errors?

We explicitly solicit Blunders, Unexpected Glitches, and Surprises (BUGS) from modeling and field or lab experiments and from all disciplines of the Geosciences.

In a friendly atmosphere, we will learn from each other’s mistakes, understand the impact of errors and abandoned paths on our work, give each other ideas for shared problems, and generate new insights for our science or scientific practice.

Here are some ideas for contributions that we would love to see:
- Ideas that sounded good at first, but turned out to not work.
- Results that presented themselves as great in the first place but turned out to be caused by a bug or measurement error.
- Errors and slip-ups that resulted in insights.
- Failed experiments and negative results.
- Obstacles and dead ends you found and would like to warn others about.

For inspiration, see the collection of BUGS - ranging from clay bricks to atmospheric temperature extremes - at https://meetingorganizer.copernicus.org/EGU25/session/52496

Co-organized by AS/BG/CL/CR/EMRP/ERE/ESSI/G/GD/GD5/GI/GM/GMPV/HS/NH/NP/OS/PS/PS7/SM/SSP/SSS/ST/TS/TS10
Convener: Jonas PyschikECSECS | Co-conveners: Ulrike ProskeECSECS, Martin GauchECSECS, Justine BergECSECS, Florina Roana SchalamonECSECS

GS5 –  Geoscience Information For Teachers

Sub-Programme Group Scientific Officer: Gina P. Correia

Proposals are marked in red.

Session short summary:
Earth Science is compulsory in many European school curricula and is essential for understanding global challenges, yet it often has limited visibility in schools. We welcome contributions on curricula, policies, reforms, comparative experiences, and transferable practices to strengthen international collaboration and support Earth Science education.
Keywords: Education, School-level
GS5

A two-and-a-half-day Geosciences Information For Teachers (GIFT) workshop which will give selected teachers the opportunity to learn about various topics related to the theme of 'Teaching Geoscience Today for Tomorrow', including geochronology, mass extinctions, energy transition resources and solar radiation modification, among others. These topics will be presented by renowned scientists. Teachers will also have the opportunity to participate in hands-on sessions covering Earth observation applications, the use of virtual reality in risk education and analogue modeling. During the GIFT workshop, teachers will have the chance to interact with each other and share ideas and experiences on how to implement their acquired knowledge in their school teaching programmes and communicate it to young students.

Convener: Stavros StathopoulosECSECS | Co-conveners: Francesca Cifelli, Francesca Funiciello, Konstantinos Kourtidis, Ulrike Kastrup
GS5

Participants, the GIFT teachers, will be divided into small groups and rotate through hands-on thematic workshops exploring Earth observation applications, the use of virtual reality in risk education, and analogue modelling. The activities will provide practical experience with innovative tools and approaches for teaching geoscience topics and preparing students for the future.

Convener: Gina P. Correia | Co-conveners: Phil Smith, Hélder Pereira, Bruce D. Malamud, Stavros StathopoulosECSECS
GS5

Geoscience is advancing rapidly while societies face increasingly pressing challenges related to climate change, natural hazards, water resources, environmental change and the sustainable use of Earth resources. Yet both frontier research and these rapidly evolving issues can take time to reach the classroom.

This session explores how frontier geoscience and pressing societal issues can be brought into teaching, making today’s science accessible, meaningful and engaging for students. Teachers are invited to share their experiences and approaches for translating recent discoveries, emerging research questions, new observations, methods and datasets into educational activities and resources.

Contributions may address topics across the geosciences and may involve real scientific data, field observations, experiments, digital tools, remote sensing, citizen science, inquiry-based learning, or interdisciplinary projects. Particular attention is given to approaches that allow students not only to learn established scientific knowledge, but also to engage with science in the making and to understand how geoscientists investigate the major challenges facing our planet and societies.

By sharing classroom and field experiences from different countries and educational contexts, this session aims to strengthen the connection between today’s geoscience research, tomorrow’s challenges and the classroom.

As an open poster session, it also provides an opportunity for the wider EGU community to discover and exchange around educational approaches developed within and beyond the GIFT community.

Convener: Florence Bigot-Cormier | Co-conveners: Stavros StathopoulosECSECS, Stephen Macko, Maria Eugenia Dies Alvarez, Teresita Gravina

GS6 –  Geoscience, Risk & Decision-Making

Sub-Programme Group Scientific Officer: Kelley De Polt

Proposals are marked in red.

Session short summary:
Storylines can be used to describe risks and impacts of climate-driven trends or extreme events while making uncertainty, assumptions and decision relevance explicit. By bridging physical modelling, socioeconomic pathways and participatory approaches, this session aims to strengthen the role of storylines as shared, transparent and actionable tools for managing climate risks in a changing world.
Keywords: Climate change - adaptation, Climate extremes, Compound events, Disaster risk management, Vulnerability/damage assessment
Co-organization suggestions:
CL0 | Inter- and Transdisciplinary Sessions
Session short summary:
We want to know how improved coordination, data integration, and new technologies can enhance Ris’ capacities to deliver timely and actionable intelligence. We seek practical examples that demonstrate the integration of heterogeneous environmental observations with machine learning; and digital twin technologies coupling the scientific data with operational and policy mechanisms.
Keywords: Climate extremes, Environmental sensor networks, Research coordination, Risk management, Science communication - policy
Co-organization suggestions:
NH | Natural Hazards
OS | Ocean Sciences
Session short summary:
Early Warning Systems are essential for disaster risk reduction, but effectiveness depends on scientific robustness, cross-disciplinary integration, and innovation to meet targets. This session invites contributions from geosciences, social sciences, and disaster management, focusing on early warning and anticipatory action, community engagement, impact-based approaches, and innovations.
Keywords: Early warning systems, Multi-risk (management, assessments, models), Risk Mitigation, Risk communication, Risk/hazard Assessment (identification, Analysis and Evaluation)
Co-organization suggestions:
NH9 | Natural Hazards & Society
Session short summary:
This session explores how solar-induced fluorescence and hyperspectral remote sensing link vegetation traits, photosynthesis and ecosystem responses across scales. It brings together observations and modelling to advance stress detection, early warning and risk assessment, supporting ecosystem monitoring, climate resilience, mitigation and adaptation.
Keywords: Carbon cycle - Biosphere, Climate change - adaptation, Machine Learning, Remote Sensing - Biosphere, Risk management
Co-organization suggestions:
BG3 | Terrestrial Biogeosciences
ESSI1 | Next-Generation Analytics for Scientific Discovery: Data Science, Machine Learning, AI
GI1 | New Frontiers in Geoscience Instrumentation
HS6 | Remote sensing and data assimilation
Session short summary:
This session focuses on disaster recovery and longer-term resilience building across single, multi-hazard, compound, and consecutive disaster contexts. We welcome methodological advances, empirical studies, and practical experiences on assessing and supporting recovery and resilience, including adaptation, decision-making, transformative recovery, and links to long-term sustainability.
Keywords: Disaster risk management, Multi-risk (management, assessments, models), Resilience, Risk management, Sustainability
Session short summary:
Modelling helps to reveal how interactions between environmental processes, human decision-making and institutions shape the dynamics of socio-ecological systems. This session brings together socio-ecological modelling approaches to explore feedbacks, cross-scale interactions, non-linear processes and emerging trajectories of risk and resilience.
Keywords: Disaster risk management, Land use, Resilience, Risk/hazard scenarios modeling and forecasting, Socio-ecological system
CL3.2

Earth resilience is the capacity of the intertwined human-Earth system to resist, recover, and regenerate back to a Holocene-like and habitable functioning in response to human pressures. A deeper understanding of Earth system resilience is key to charting safe operating spaces for prosperous and equitable future human development. Recent assessments of Earth system integrity highlight the deteriorating resilience of our planet, with planetary-scale human pressures (such as greenhouse gas emissions and land-use change) pushing the Earth system into the uncharted territory of the Anthropocene. Of particular concern are risks of triggering nonlinear changes in large-scale components of the Earth that can undergo abrupt, often irreversible state shifts once critical thresholds are crossed. Examples include the Greenland ice sheets, the Atlantic Meridional Overturning Circulation, and major ecosystems such as the Amazon rainforest. Their interactions may trigger tipping cascades, where the destabilization of one element increases the risk of others tipping, thereby amplifying Earth system change and undermining long-term Earth resilience.

The Earth system’s future trajectory is now co-shaped by human–Earth system feedbacks, where human activities both drive and respond to biophysical change. Fossil fuel use, deforestation, and land-use intensification contribute to destabilizing Earth system dynamics, while societal responses - such as mitigation policies, technological innovation, or behavioral shifts - can either reinforce unsustainable trajectories or create stabilizing feedbacks. In this context, research is uncovering the potential for social tipping dynamics, which could accelerate decarbonization and foster transformative pathways towards global sustainability to revitalize and regenerate Earth resilience.

We invite contributions on all topics relating to Earth resilience, planetary boundaries, safe operating spaces, tipping points in the Earth system, positive (social) tipping, as well as their interactions and potential domino effects. We welcome studies that use Earth system modelling, integrated human-Earth system models, from conceptual approaches to data-driven analysis to investigate nonlinear dynamics, abrupt shifts, and tipping points, as well as contributions exploring social transformation processes and their role in shaping a more sustainable future for people and the planet.

Co-organized by GS10/GS6
Convener: Jonathan Donges | Co-conveners: Eric Galbraith, Lan Wang-Erlandsson, Nico WunderlingECSECS
HS7

The growing availability of hydrological data products derived from Earth observations, reanalysis systems, numerical models, in situ monitoring networks, and data assimilations has transformed our ability to monitor and understand the terrestrial water cycle.
These products have become indispensable for supporting applications ranging from flood and drought management to water resources planning, agriculture, ecosystem monitoring, and climate adaptation. Yet product selection still often relies on general and often partial performance rankings that may not reflect the requirements of a specific process, scale, hydrological regime, model, hazard, service, or decision. They also may not reflect large differences in the spatial distribution and historical depth of the supporting data.
This session invites contributions that explore how hydrological data products should be assessed, compared, and used to maximize their scientific and societal value, based on the intended application. We encourage discussions on methodologies that go beyond traditional validation and consider aspects such as uncertainty, robustness, consistency across scales, interoperability, usability, and fitness for purpose.
Particular emphasis is placed on understanding how different user communities define product quality and how assessment frameworks can better reflect their needs.
Topics include, but are not limited to:
● Assessment, benchmarking, , and uncertainty assessment of satellite-derived, reanalysis, model-based, and integrated hydrological datasets.
● Fitness-for-purpose assessments of gridded products for scientific analyses, models, operational services, climate applications, and decision-support systems.
● Scale dependence, representativeness, and cross-product consistency.
● Experiences from operational services and real-world applications that reveal strengths and limitations of existing products.
● Case studies demonstrating how dataset choice influences hydrological analyses, forecasts, or management decisions.
● Emerging approaches for evaluating products in the context of digital twins, Earth system modelling, and climate services.
● Analyses or discussions addressing the influence of changes in the constelation(s) of Earth orbiting satellite.
The session welcomes contributions from data producers, hydrologists, remote sensing scientists, model developers, operational agencies, policy experts, and end users.

Co-organized by GS6
Convener: Vasco Mantas | Co-conveners: Viviana Maggioni, Chris Funk

GS7 –  Community Science, Co-creation & Participatory Research

Sub-Programme Group Scientific Officer: Natalie Ceperley

Proposals are marked in red.

Session short summary:
This session explores how creative, interactive and participatory approaches are reshaping geoscience risk communication. We welcome contributions on serious games, simulations, scenarios, arts-based methods and storytelling, with a focus on inclusion, preparedness, climate adaptation, disaster risk reduction to assess their effectiveness across diverse communities and hazards.
Keywords: Climate change - adaptation, Disaster risk management, Participatory science, Risk communication, Science communication - public
Co-organization suggestions:
CL3.2 | Future Climate – Climate and Society
NH9 | Natural Hazards & Society
Session short summary:
Science is best learned by doing, but starting a scientific career is rarely easy. This session invites reflections on the challenges encountered during research. Sharing challenges and their solutions is critical for Early Career Scientists to improve everyday activities, reduce impostor syndrome and self-doubt, and highlight the human and community side of science.
Keywords: Early career scientist, Scientific community, Work-life-balance
Session short summary:
Citizen science and participatory approaches are reshaping disaster risk reduction (DRR), especially in data-scarce, marginalised and Global South contexts. This session explores citizen science as knowledge co-production — not just data collection — covering community-based monitoring, Indigenous knowledge, co-design ethics, and pathways to locally relevant, equitable and sustainable DRR.
Keywords: Citizens & crowdsourcing, Disaster risk management, Risk Monitoring, Societal impact, Vulnerability/damage assessment
Convener suggestion: Theresia Bilola
GS7

Indigenous Peoples have lived with active landscapes and environmental change for millennia, developing sophisticated knowledge systems grounded in long-term observation, oral traditions, cultural practices, and enduring relationships with place. These knowledge systems provide important insights into Earth surface processes, including volcanic activity, earthquakes, landslides, floods, coastal hazards, environmental change, and the stewardship of culturally significant landscapes.

Addressing complex geohazard and geoheritage challenges increasingly requires approaches that move beyond knowledge sharing towards ethical, reciprocal, and sustained partnerships. This session explores how Indigenous communities, researchers, practitioners, and decision-makers can work together to co-produce knowledge and co-develop solutions that are meaningful, locally relevant, and respectful of Indigenous rights, values, governance, and data sovereignty.

We invite contributions that examine ethical engagement practices at the interface of Indigenous knowledge and geoscience, including collaborative research design, community-led monitoring, participatory hazard assessment, geoheritage stewardship, Indigenous governance, and approaches that foster mutual learning and benefit. We particularly welcome case studies that highlight how equitable partnerships and the respectful weaving of Indigenous and scientific knowledge systems can strengthen understanding of dynamic Earth processes, support disaster risk reduction, enhance geoheritage outcomes, and build trust across knowledge communities.

By focusing on ethical and reciprocal engagement, this session aims to advance more inclusive geoscience practices and showcase pathways for co-developed geohazard and geoheritage solutions that are scientifically robust, culturally appropriate, and socially just.

Co-organized by GM4/NH
Convener: Lucy Kaiser | Co-conveners: Jonathan Procter, Kristie-Lee Thomas, Rebecca Fitzgerald

GS8 –  Science for Policy & Governance

Proposals are marked in red.

Session short summary:
How can geoscience inform policy, regulation and decision-making? This session explores practical experiences of science–policy engagement, including consultations, advisory groups and science advice. We welcome researchers, policymakers, practitioners, industry and NGOs to share what worked, what did not, and lessons for strengthening the interface between science and policy.
Keywords: Climate change - adaptation, Climate change - mitigation, Climate change - societal impact, European policy, Science policy
Session short summary:
Inadequate political and societal responses to escalating climate impacts have prompted increasing legal action, which requires robust scientific evidence. This session brings together research from different geoscience disciplines that can inform legal arguments on adaptation, mitigation, and loss and damage and will include transdisciplinary exchanges with the legal profession.
Keywords: Climate change - anthropogenic, Climate change - societal impact
Co-organization suggestions:
CL3.2 | Future Climate – Climate and Society
Session short summary:
AI models may perform well without being ready for use in real decisions. This session explores what AI-derived geoscience products need to demonstrate in terms of reliability, uncertainty, explainability, operational readiness, accountability and governance before they can support policy and practice.
Keywords: Artificial Intelligence, Model validation, Science policy, Societal impact, Uncertainty analysis
Co-organization suggestions:
CL0 | Inter- and Transdisciplinary Sessions
NH9 | Natural Hazards & Society
Session short summary:
The changing cryosphere poses growing risks to ecosystems, livelihoods and society. The session will explore how science, policy and society can be brought together to tackle these challenges. It will encourage researchers, policymakers and practitioners to share experiences, challenges and gaps in evidence and implementation at the science–policy–society interface linked to cryosphere impacts.
Keywords: Climate change - impact on cryosphere, Climate change - societal impact, Cryosphere, Science policy
Co-organization suggestions:
CR7 | The Cryosphere in the Earth system: interdisciplinary topics
NH11 | Climate Hazards
Session short summary:
Geological storage requires that geoscientific evidence be translated into sound, transparent, and understandable decisions. With a special focus on radioactive waste disposal, this session explores how uncertainty, safety assessment, regulation, governance, participation, communication, ethics, and law influence site selection, licensing, and long-term disposal.
Keywords: Nuclear waste, Risk communication, Risk management, Science policy, Uncertainty analysis
Co-organization suggestions:
ERE3 | Geo-storage
HS | Hydrological Sciences
Session short summary:
Ten years after the Paris Agreement, a temporary 1.5°C overshoot is virtually unavoidable. In line with Article 4.1, this session explores global net-zero timing across three key angles: where we stand on climate science, where we are headed under current policies, and the lowest feasible path forward to limit peak warming and bring temperatures back down.
Keywords: Climate change - mitigation, Climate change - modelling, Science policy
Co-organization suggestions:
CL0 | Inter- and Transdisciplinary Sessions
ERE1 | Integrated studies
SSP1

Research in stratigraphy, sedimentology and paleontology has wide-ranging implications for society, from renewable energy applications to geoheritage conservation, and policy decisions pertaining to conservation and hazard management. While this societal relevance has been increasingly recognized, dedicated venues for showcasing this translation of research into practice remain limited. This session aims to address a pertinent question: what can stratigraphy, sedimentology and palaeontology offer to decision-making, conservation policies and industry? In doing so, it seeks to foreground the intersection of academic research with societal application. Contributions may address, but are not limited to:
1. The role of these fields in geoheritage conservation
2. Paleontology and paleoecology in environmental conservation
3. Stratigraphy and sedimentology in hazard management and resource mitigation in the context of climate change
4. Stratigraphy, sedimentology and paleontology in renewable energy management and sustainable mining
While many studies touch on societal themes more broadly, this session places particular emphasis on research that can demonstrate a clear pathway from scientific evidence to practical applications in policy, conservation, environmental management or industry. We particularly welcome contributions that illustrate how databases, FAIR (Findable, Accessible, Interoperable, Reusable) data workflows, methodologies, or specific research outputs can play a concrete role in decision-making and/or industry applications, thereby facilitating the translation of research into practical applications.

Co-organized by GS8
Convener: Shradha MenonECSECS | Co-conveners: Danijela DimitrijevicECSECS, Cinzia Bottini

GS9 –  Business, infrastructure and industry