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EOatSEE – SEA LEVEL AND COASTAL HAZARDS

The project aims to an advanced reconstruction of the relevant processes included in extreme sea level events and its related coastal hazards, by taking advantage of the novel capabilities and synergies offered by the latest advances in eo technology. The solid scientific knowledge shall enhance the fundamental scientific understanding and predictive capacity of such events, as well as the potential to better assess the related risk and the vulnerability of coastal zones


EOSC Beyond: advancing innovation and collaboration for research

EOSC Beyond è un progetto di 36 mesi coordinato dalla Fondazione EGI con l’ambizione di supportare la crescita dell’European Open Science Cloud (EOSC) in termini di provider e user fornendo nuove soluzioni tecniche che consentano agli sviluppatori di applicazioni scientifiche di comporre facilmente un portafoglio diversificato di risorse EOSC da offrire ai ricercatori come capacità integrate.


EOSC-hub – Integrating and managing services for the European Open Science Cloud

The EOSC-hub project creates the integration and management system of the future European Open Science Cloud that delivers a catalogue of services, software and data from the EGI Federation, EUDAT CDI, INDIGO-DataCloud and major research e-infrastructures. The Hub acts as a single contact point for researchers and innovators to discover, access, use and reuse a broad spectrum of resources for advanced data-driven research.


EOSC-Marine: Operationalizing the EOSC Node | European Digital Twin Ocean to Support the EU Mission Ocean & Waters

The EOSC Ocean & Waters Node aims at further developing and integrating the current EOSC candidate marine thematic node into the operational thematic node for marine research within the EOSC Federation, providing researchers an EOSC compliant digital environment with access to core computing capabilities (Authentication, Authorisation and Accounting, Research Catalogues and Knowledge Graph, Application Workflows, Monitoring and Helpdesk), coupled with multidisciplinary datasets and workflows from in- situ and earth observations, models, analytical tools/services, essential for responding to the needs and objectives defined by the EC Mission “Restoring our Ocean and Waters by 2030”. The EOSC Ocean & Waters Node directly builds upon the achievements from the Blue-Cloud 2026 project and the EU initiated and funded EDITO programme that is building EDITO as the core infrastructure for the European Digital Twin of the Ocean.


EPOC – Economic Policy in Complex Environments

The Innovative Training Network EPOC aims at advancing the state-of-the-art and the applicability of computationally intensive methods for decision and policy analysis and at using these methods in the domains of climate change and innovation.


ERC Synergy Grant EUROpest – A Novel Understanding of Pandemic Disease in Preindustrial Europe (1300-1800): Combining History, Machine Learning and Natural Sciences

Born from years of interdisciplinary collaboration, EUROpest aims to articulate the complex ways in which social-ecological systems shape epidemics. It builds on resilience and actor-network theories to advance its own eco-bio-social paradigm that embraces a multi-causal understanding of disease transmission and disease impacts on human societies and ecosystems.


ESA CMUG: Climate Modelling Users Group

ESA has established the Climate Modelling User Group (CMUG) to place a climate system perspective at the centre of its Climate Change Initiative (CCI) programme, and to provide a dedicated forum through which the Earth observation data community and the climate modelling and reanalysis community can work closely together. CMUG will work with the Essential Climate Variable CCI projects to achieve this goal.


ESA_WATER: Wide-swath AlTimetry for Eddy Reconstruction

Mesoscale eddies are ubiquitous in the ocean, they can originate nearly everywhere, move around the basin and transporting trapped water with anomalous properties with respect to the surroundings. Although only the surface expression of mesoscale eddies is visible in remote sensing measurement of sea level anomaly (SLA), they are three-dimensional (3D) structures that can reach down into the pycnocline. WATER project plans to study the population of “active” eddies that can be extracted from surface altimetry and sea surface temperature maps. “Active” eddies are surface SLA pattern that include a colocalized SST environmental anomaly that is typically the signal of the 3D physical/biological processes concurring in the same place. The project plans to assess the active population both in the SWOT-enhanced altimetry maps and the conventional altimetry data to quantify the impact of the next-generation altimeter.


ESiWACE2 – Excellence in Simulation of Weather and Climate in Europe, Phase 2

ESiWACE2 will deliver configurations of leading models that can make efficient use of the largest supercomputers in Europe and run at unprecedented resolution for high-quality weather and climate predictions. It will develop HPC benchmarks, increase flexibility to use heterogeneous hardware and co-design and provide targeted education and training for one of the most challenging applications to shape the future of HPC in Europe.


ESiWACE3 – Center of excellence for weather and climate phase 3

Extreme weather events and climate change are two of the main threats for society of the 21st century. Extreme weather events caused over 500 thousand casualties and over 2 trillion USD economic damages in the past 20 years. A failure of climate change mitigation and adaptation targets is ranked among the leading threats to global society. At the 2015 Paris Climate Conference, leaders from 194 countries of the world unanimously acknowledged the serious threat posed by anthropogenic emissions of greenhouse gases. Society must now become resilient to changes in climate over coming decades, which requires making quantitative estimates for future changes of weather patterns and climate extremes. This includes exceptional weather events such as violent windstorms and flash floods, but also persistent anomalies in planetary-scale circulation patterns, which lead to pervasive flooding in some regions and seasons, and long-lived drought and extremes of heat in others. Numerical models of the Earth system represent the most important tool to anticipate and assess these kinds of threats. One of the main factors that is limiting the skill of these models is limited resolution, and resolution, in turn, is limited by computational power that can be leveraged by these models. The first two phases of the ESiWACE Centre of Excellence (COE) have pushed the resolution of global Earth system models to unprecedented levels. This includes the first global atmosphere models that were able to run at ~1 km resolution in the first phase of ESiWACE and coupled atmosphere/ocean models that were able to


EstuarIO – Estuarine box model for Interfacing rivers and Ocean

General objectives: EstuarIO aims to combine capacities to handle observational data and advanced modeling approaches to improve surface boundary conditions in the Copernicus Marine regional configurations. Activities: EstuarIO develops specific interfaces with the European Flood Awareness System (EFAS) and river altimetry data in the estuarine area as provided by HydroWeb. Expected results: EstuarIO project’s results will be tested in the Mediterranean and Black Sea physical analysis and forecasting systems by adopting the pre-qualification and validation methods as used in both Copernicus Med-MFC and BS-MFC.


ETC-ICM – European Topic Centre on Inland, Coastal and Marine waters

The intention of the project is to establish a seamless environmental information system to assist the Commission and EEA member countries in their attempts to improve the environment, move towards sustainability and integrate environmental policies with other sectors such as economic, social, transport, industry, energy and agriculture.


ETC-ICM – European Topic Centre on Inland, Coastal and Marine waters

The European Topic Centre on Inland, Coastal and Marine waters (ETC/ICM) is an international consortium brought together to support the European Environment Agency (EEA) in its mission to deliver timely, targeted, relevant and reliable information to policy-makers and the public for the development and implementation of sound environmental policies in the European Union and other EEA member countries.


ETC/CCA – European Topic Centre on Climate Change impacts, vulnerability and Adaptation

The ETC/CCA is a Consortium of European Organizations contracted by the European Environment Agency (EEA) to carry out specific tasks consistently with the EEA 2014-2018 five-year strategy and Multiannual Work Programme and the specific EEA Annual Work Programmes in the area of climate change impacts, vulnerability and adaptation (CCIVA) across Europe.


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