Url https://cimne.com/sgp/rtd/Project.aspx?id=405
LogoEntFinanc LogoPlan
Acronym LESSLOSS
Project title Risk mitigation for earthquakes and landslides
Official Website http://www.lessloss.org/main
Reference GOCE-CT-2003-505448
Principal investigator Horia Alejandro BARBAT - barbat@cimne.upc.edu
Start date 01/09/2004 End date 31/08/2007
Coordinator UNIPV
Consortium members
  • SNECMA
  • LMS
  • SIKA
  • IMR SAS KOSICE
  • SANDVIK HARD MATERIALS LTD
  • PROSYST
  • ISTI
  • Campden & Chorleywood Food
  • ASERM
  • GKN SINTERMETALS GMBH
  • MIMITALIA
  • HILTI AG
  • HÖGANÄS AB
Program FP6 (2002-2006) Call FP6-2002-Global-1
Subprogram - Category Europeo
Funding body(ies) EC Grant $117,200.00
Abstract Earthquake and landslide risk is a public safety issue that requires appropriate mitigation measures and means to protect citizens, property, infrastructure and the built cultural heritage. Mitigating this risk requires integrated and coordinated action that embraces a wide range of organisations and disciplines. For this reason, the LESSLOSS IP is formulated by a large number of European Centres of excellence in earthquake and geotechnical engineering integrating in the traditional fields of engineers and earth scientists some expertise of social scientists, economists, urban planners and information technologists. The LESSLOSS project addresses natural disasters, risk and impact assessment, natural hazard monitoring, mapping and management strategies, improved disaster preparedness and mitigation, development of advanced methods for risk assessment, methods of appraising environmental quality and relevant pre-normative research. In order for the multi-disciplinary S&T ingredients of the project to be tackled in an efficient and productive manner, the research programme has been split into three distinct areas: physical environment, urban areas and infrastructures. For each one of this areas four main types of transversal fields have been identified as fundamental and capable of producing permanent effects on risk mitigation: (i) instrumentation and monitoring, (ii) methods and technologies to reduce vulnerability, (iii) innovative approaches for design/assessment and (iv) disaster scenarios and loss modelling. Within this general framework, specific objectives will be pursued, such as the development of innovative methods and approaches to design and assessment of structures and earth slopes for both short- and long-term implementation, the development of advanced monitoring techniques and devices, and the development, manufacturing and testing of innovative isolating and dissipating seismic devices.