NUMERIWAVES

New analytical and numerical methods in wave propagation

 Coordinatore BCAM - BASQUE CENTER FOR APPLIED MATHEMATICS ASOCIACION 

Spiacenti, non ci sono informazioni su questo coordinatore. Contattare Fabio per maggiori infomrazioni, grazie.

 Nazionalità Coordinatore Spain [ES]
 Sito del progetto http://www.bcamath.org/projects/NUMERIWAVES/
 Totale costo 1˙662˙999 €
 EC contributo 1˙662˙999 €
 Programma FP7-IDEAS-ERC
Specific programme: "Ideas" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call ERC-2009-AdG
 Funding Scheme ERC-AG
 Anno di inizio 2010
 Periodo (anno-mese-giorno) 2010-02-01   -   2016-01-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    BCAM - BASQUE CENTER FOR APPLIED MATHEMATICS ASOCIACION

 Organization address address: AL MAZARREDO 14
city: BILBAO
postcode: 48009

contact info
Titolo: Mr.
Nome: Miguel Angel
Cognome: Benitez Lozano
Email: send email
Telefono: 34946567842
Fax: 34946567843

ES (BILBAO) hostInstitution 1˙662˙999.80
2    BCAM - BASQUE CENTER FOR APPLIED MATHEMATICS ASOCIACION

 Organization address address: AL MAZARREDO 14
city: BILBAO
postcode: 48009

contact info
Titolo: Prof.
Nome: Enrique
Cognome: Zuazua
Email: send email
Telefono: 34946567842
Fax: 34946567843

ES (BILBAO) hostInstitution 1˙662˙999.80

Mappa


 Word cloud

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numerical    schemes    significant    wave    tools    analytical    discretizations    propagation    waves    pde   

 Obiettivo del progetto (Objective)

'This project is aimed at performing a systematic analysis, providing a real breakthough, of the combined effect of wave propagation and numerical discretizations, in order to help in the development of efficient numerical methods mimicking the qualitative properties of continuous waves. This is an important issue for its many applications: irrigation channels, flexible multi-structures, aeronautic optimal design, acoustic noise reduction, electromagnetism, water waves, nonlinear optics, nanomechanics, etc. The superposition of the present state of the art in Partial Differential Equations (PDE) and Numerical Analysis is insufficient to understand the spurious high frequency numerical solutions that the interaction of wave propagation and numerical discretizations generates. There are some fundamental questions, as, for instance, dispersive properties, unique continuation, control and inverse problems, which are by now well understood in the context of PDE through the celebrated Strichartz and Carleman inequalities, but which are unsolved and badly understood for numerical approximation schemes. The aim of this project is to systematically address some of these issues, developing new analytical and numerical tools, which require new significant developments, much beyond the frontiers of classical numerical analysis, to incorporate ideas and tools from Microlocal and Harmonic Analysis. The research to be developed in this project will provide new analytical tools and numerical schemes. Simultaneously, it will contribute to significant progress in some applied fields in which the issues under consideration play a key role. In parallel with the analytical and numerical analysis of these problems, a mathematical simulation platform will be set to perform computer simulations and explore and visualize some of the most relevant and complex phenomena.'

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