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Accurate Roms for Industrial Applications

PI: Tomás Chacón Rebollo co-PI: Macarena Gómez Mármol Acronym: ARIA Abstract: The project Accurate Roms for Industrial Applications aims at developing an array of mathematical methods for constructing predictive reduced-order models (ROMs) with guaranteed accuracy, robustness, reliability and efficiency for applications involving complex physical phenomena. New approaches to this challenge are proposed here with a …

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Modelización de Orden Reducido de componentes de sub-malla en Métodos de Multiescala Variacional

PI: Tomás Chacón Rebollo Abstract: This project combines computational fluid mechanics with reduced order modeling with Variational Multi-Scale turbulence models. It has as main objectives on the one hand the precise structural modeling of the closure functions of VMS models. We intend to build order models reduced that allow to obtain precise expressions of the parameterization …

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Modelización de Orden Reducido Orientada al Diseño Eco-Eficiente de Edificios

PI: Tomás Chacón Rebollo co-PI: Macarena Gómez Mármol Abstract: World energy needs make it necessary the research in energy saving procedures and renewable energy sources, to contribute to sustainable development. This project is focused on the analysis and structural optimization of courtyards as elements of energy saving in the acclimatization of buildings, as well as …

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Modelos multicapa no-hidrostáticos relajados y métodos numéricos de alto orden bien equilibrados para flujos geofísicos

PI: Enrique D. Fernández Nieto  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 impose weakly the zero divergence …

Modelos multicapa no-hidrostáticos relajados y métodos numéricos de alto orden bien equilibrados para flujos geofísicos Leer más »

Desarrollo, análisis e implementación eficiente de métodos numéricos de alto orden para modelos simplificados de fluidos con incertidumbre en los datos

PI: Enrique D. Fernández Nieto  Abstract: The objectives of the project are: Development of numerical schemes for nonconservative hyperbolic systems: we aim to complete the investigation of the convergence properties of path-conservative numerical methods and to obtain new families of numerical schemes with improved properties. Application to the simulation of geophysical flows: in order to achieve …

Desarrollo, análisis e implementación eficiente de métodos numéricos de alto orden para modelos simplificados de fluidos con incertidumbre en los datos Leer más »

Desarrollo de simuladores hidrodinámicos y morfodinámicos eficientes para la evaluación y previsión de riesgos II

PI: Enrique D. Fernández Nieto  Abstract: The main objective of this project is the development of numerical simulators in the field of hydro and morphodynamics that constitute useful tools for the evaluation and forecasting risks related to natural  catastrophes.  From a modeling point of view, new models will be developed for simulation of floods; generation and …

Desarrollo de simuladores hidrodinámicos y morfodinámicos eficientes para la evaluación y previsión de riesgos II Leer más »

Well Balanced High Order Numerical Methods for Nonlinear Hyperbolic Systems: Application to Design of Mathematical Tools for Early Warning of Natural Disasters

PI: Manuel J. Castro Díazco-PI: Carlos Parés Madroñal Abstract: This project is the natural extension to three years of execution of the so-called “Well-balanced high-order numerical methods for nonlinear hyperbolic systems. Applications to the simulation of geophysical flows ”that has been requested in the recent call of the University of Malaga (ERDF operational program). The main …

Well Balanced High Order Numerical Methods for Nonlinear Hyperbolic Systems: Application to Design of Mathematical Tools for Early Warning of Natural Disasters Leer más »

Well balanced high order numerical methods for nonlinear hyperbolic systems. Applications to the simulation of geophysical flows

PI: Manuel J. Castro Díazco-PI: Carlos Parés Madroñal Abstract: The main objective of this project is the development and improvement of numerical models that constitute useful tools in the prediction and management of catastrophes caused by geophysical flows, such as floods, tsunamis or “storm surges”. New models for these problems will be developed that incorporate non-hydrostatic …

Well balanced high order numerical methods for nonlinear hyperbolic systems. Applications to the simulation of geophysical flows Leer más »