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Development of efficient hydrodynamic and morphodynamic simulators for risk assessment and forecasting

PI: Manuel J. Castro Díazco-PI: Carlos Parés Madroñal Acronym: SIMUNRISK Abstract: The main goal of this project is the development of numerical models in the field of hydro and morpho-dynamics which are useful tools for the assessment and forecasting of risks related to natural or man-made disasters. These simulators will increase the power and versatility of …

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Relaxed non-hydrostatic multilayer models and high-order well-balanced numerical MEthods for GeophysicAl FLOWs

PI: Manuel J. Castro Díazco-PI: Carlos Parés Madroñal Acronym: MEGAFLOW Abstract: The main objective of this project is to introduce new multilayer non-hydrostatic mathematical models for the simulation of geophysical flows such as tsunami waves, storm surges, debris flows, landslides, etc. that can be used to model real-world problems. A relaxation strategy will be used to …

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Modelling and computation of shocks and interfaces

Coordinator of the UMA node: Carlos Parés Madroñal Acronym: ModCompShock Abstract: This network was focused on the training of young researchers (ESRs) in the general area of nonlinear hyperbolic and convection dominated PDEs (HCD-PDEs) with emphasis on innovative modelling and computational methods. The research program within this network was centered in a prominent (in terms of …

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Enabling dynamic and Intelligent workflows in the future EuroHPC ecosystem

IP in UMA node: Jorge Macías SánchezIP in BSC-CNS node: Rosa Badía Acronym: eFLows4HPC Abstract: Today, developers lack tools that enable the development of complex workflows involving HPC simulation and modelling with data analytics (DA) and machine learning (ML). TheFlows4HPC aims to deliver a workflow software stack and an additional set of services to enable the …

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Acceleration Global science In Tsunami HAzard and Risk analysis

IP: Jörn Behrens (University of Hamburg)co-IP: Jorge Macías Sánchez Acronym: AGITHAR Abstract: AGITHAR – Accelerating Global science In Tsunami HAzard and Risk analysis – is a network to improve, standardize, and promote tsunami research. It uses specific COST tools – workshops, networking, exchange of experts – in order to Assess current approaches in tsunami hazard and risk …

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All Risk Integrated System TOwards Trans-hoListic Early-warning – Enhanced European Natural Hazards Scientific Partnership

IP in UMA node: Jorge Macías SánchezIP in INGV node: Alberto Michellini Acronym: ARISTOTLE-eENHSP Abstract: ARISTOTLE-eENHSP fosters the collective experience gained during the previous ARISTOTLE-ENHSP and the initial pilot ARISTOTLE project, is a long-term operational, research, and cooperation project financed by the Directorate-General for European Civil Protection and Humanitarian Aid Operations (DG ECHO). ARISTOTLE-eENHSP aims to …

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Mejora del sistema de alerta temprana de tsunamis en España mediante técnicas de Machine Learning

IP: Jorge Macías Sánchez Acronym: UMA-CEIATECH-05 Abstract: The objective of this project is to improve the Spanish Tsunami Early Warning System (TEWS) managed by the IGN and of which the EDANYA group is a scientific advisor, and doing so using Machine Learning techniques. Currently this system uses the Tsunami-HySEA (TH) code for the direct simulation of …

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