H2020Doctoral network2015–2018

WAVES · Waves and Wave-Based Imaging in Virtual and Experimental Environments

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2015-01-01 → 2018-12-31
EU contribution
€3,227,953
Participants
14
Scheme
MSCA-ITN-ETN

Lines connect the coordinator with its partners.

Results in brief

Waves and Wave-Based Imaging in Virtual and Experimental Environments

Demand for highly trained scientists with a deep understanding of wave propagation in complex media, and capable of exploiting this knowledge to develop imaging tools for seismology and acoustics, is very high in the Earth and environmental sciences. Wave-based imaging serves to map spatial and temporal variations in the structure of the Earth's interior, of the oceans and atmosphere; it is used to monitor faults and volcanoes and detect natural-resource reservoirs. It is relevant to other disciplines, medical imaging being one of its most widespread applications. Today’s Earth scientists are faced with a set of questions that require the application of wave-based imaging at unprecedented resolution. WAVES contributed to fostering scientific and technological advances in this context, stimulating knowledge exchange between seismologists and acousticians, and researchers in the public/private domains. Through WAVES, a new, unique international network of scientists has been created around a set of novel physical acoustics laboratories (managed by beneficiaries/partners of WAVES) with a strong record of experimental research on inter-disciplinary and seismology-related topics. WAVES has trained young scientists, working in academia and industry, in how to use this resource effectively, re-introducing the laboratory into the ideas-to-applications pipeline. Experiments helped us to develop new theory, addressing topics of current interest such as acoustic time-reversal, scattering-based imaging, source localisation in seismology and acoustics (including bioacoustics). A truly multidisciplinary network, WAVES has applied these new ideas in a number of contexts: medical elastography has been used as a tool to implement novel analogue models of seismic faults; wave sources were localized by a bio-inspired system making use of very few receivers, etc. Through WAVES, a critical mass of expertise has consolidated, contributing to defining the study of acoustic/elastic wave propagation and wave-based imaging/monitoring as an independent discipline, rich in applications of intellectual and societal relevance.

Data: CORDIS, © European Union

Project objective

Demand for highly trained scientists with a deep understanding of wave propagation in complex media, and capable of exploiting this knowledge to develop imaging tools for seismology and acoustics, is very high in the Earth and environmental sciences. Wave-based imaging serves to map spatial and temporal variations in the structure of the Earth's interior, of the oceans and atmosphere; it is used to monitor faults and volcanoes and detect natural-resource reservoirs. It is relevant to other disciplines, medical imaging being one of its most widespread applications. Today’s Earth scientists are faced with a set of questions that require the application of wave-based imaging at unprecedented resolution. WAVES aims at fostering scientific and technological advances in this context, stimulating knowledge exchange between seismologists and acousticians, and researchers in the public/private domains. A unique strength of our network resides in the participation of novel physical acoustics laboratories, managed by beneficiaries/partners of WAVES, with a strong record of experimental research on inter-disciplinary and seismology-related topics. WAVES will train young scientists working in academia or industry in how to use this resource effectively, re-introducing the laboratory into the ideas-to-applications pipeline. Experimental work will serve to develop new theory, addressing topics of current interest such as acoustic time-reversal, scattering-based imaging. A truly multidisciplinary network, WAVES will apply these new ideas in a number of contexts: medical elastography is used as a tool to implement novel analogue models of seismic faults; wave sources are localized by a bio-inspired system making use of very few receivers, etc. Through WAVES, a critical mass of expertise will consolidate, defining the study of acoustic/elastic wave propagation and wave-based imaging/monitoring as an independent discipline, rich in applications of intellectual and societal relevance.

Original text from CORDIS.

Participants

  • SORBONNE UNIVERSITE · ParisCoordinatorFrance
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisFrance
  • ECOLE SUPERIEURE DE PHYSIQUE ET DECHIMIE INDUSTRIELLES DE LA VILLE DEPARIS · ParisFrance
  • EIDGENOESSISCHE TECHNISCHE HOCHSCHULE ZUERICH · ZuerichSwitzerland
  • EQUINOR ENERGY AS · StavangerNorway
  • INSTITUT NATIONAL DE LA SANTE ET DE LA RECHERCHE MEDICALE · ParisFrance
  • LUDWIG-MAXIMILIANS-UNIVERSITAET MUENCHEN · PlaneggGermany
  • NORGES TEKNISK-NATURVITENSKAPELIGE UNIVERSITET NTNU · TrondheimNorway
  • SCHLUMBERGER CAMBRIDGE RESEARCH LIMITED · LondonUnited Kingdom
  • TECHNISCHE UNIVERSITEIT DELFT · DelftNetherlands
  • THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF OXFORD · OxfordUnited Kingdom
  • THE UNIVERSITY OF EDINBURGH · EdinburghUnited Kingdom
  • TRUSTEES OF COLUMBIA UNIVERSITY IN THE CITY OF NEW YORK · New YorkUnited States
  • UNIVERSITETET I OSLO · OsloNorway

Links

Data: CORDIS, © European Union