H2020Staff exchange2017–2023

RESET · REliability and Safety Engineering and Technology for large maritime engineering systems

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2017-05-01 → 2023-02-28
EU contribution
€1,282,500
Participants
9
Scheme
MSCA-RISE

Lines connect the coordinator with its partners.

Results in brief

REliability and Safety Engineering and Technology for large maritime engineering systems

Reliability and safety assessment is a challenging task for large and sophisticated maritime engineering systems or processes, and inevitably requires hypotheses, approximations and simplifications based on human judgements and analytical models. The Reliability and Safety Engineering and Technology (RESET) network for large maritime and other Made-To-Order (MTO) engineering systems provides the required dynamic approach for reliability and safety assessment. This is achieved through the integration of a pool of techniques for assisting the decision making process in the various phases of the system’s life cycle. Examples of such techniques include: uncertain data analysis methods, expert knowledge elicitation methods, probabilistic and possibilistic risk estimation methods, reliability assessment methods based on Monte Carlo simulation and finite element analysis, fatigue and fracture modelling of engineering structures, techno-economic analysis and decision making models. The research contributes to European economic competitiveness by producing a group of highly creative researchers, with the expertise and skills that allow them to become productive and insightful engineers and scientists. It also establishes collaborative mechanisms for long-term partnerships between European and Asian researchers and institutes, with expertise in reliability and safety assessment of large complex maritime engineering systems. Similarly, this shall advance reliability and safety modelling and decision making, in order to address the issues of technology changes and emerging uncertainties in the 21st century. The overall aim of this exchange programme is to bring together an international team of researchers with a wide variety of skills in reliability and safety research of large maritime engineering systems, and to tackle challenges faced by industry which require specialist knowledge and innovation. The research covers the fundamental study of reliability and safety, as well as applications in different maritime systems such as offshore installations, ships, offshore wind farms, and other MTO systems. The project has 9 partners (5 EU members and 4 TC members) who have agreed for a program of extensive exchange of both Experienced Researchers (ERs) and Early Stage Researchers (ESRs) during 70 months, in order to fully explore and exploit the complementary strengths and synergies within the consortium. The interdisciplinary nature of the exchange programme offers a link for research and training of the involved ERs and ESRs, in a collaborative academic environment. This serves to support and reinforce the collaborations amongst the participants and helps establish a long-term research collaboration.

Data: CORDIS, © European Union

Project objective

Failure of large complex engineering systems often leads to catastrophic consequences. Their efficient and safe design and operation will avoid or reduce malfunctions, failures and accidents, which would have a significant impact on the daily life of the public in terms of service and product delivery, business interruption, economic losses, human injuries/fatalities, and property and environmental damage. The proposed project aims to develop and apply knowledge in Reliability and Safety Engineering and Technology (RESET), for safe and reliable design and operation of large maritime (marine and offshore) and other made-to-order (MTO) engineering systems. This multi-disciplinary and inter-disciplinary project of 48 months’ duration, will formulate a consortium of complementary expertise targeting areas of academic and industrial importance. In particular, a series of integrated activities will investigate i) the framework for reliability and safety assessment, ii) system risk and reliability modelling under uncertainties, iii) fluid and structural modelling under uncertain environments, iv) fatigue and fracture assessment, v) decision making together with case studies, and vi) the development of guidelines for general application of the developed models. The engineering systems that are addressed in this project include: a) ships, b) offshore installations, c) offshore wind farm units and d) other MTO engineering structures/units. In order to achieve an integrated project, all the ESRs and ERs involved will conduct their model development and application within the RESET framework. Novel and flexible models for addressing the identified research needs will be developed for application in situations where conventional approaches may not be confidently applied due to incompleteness, randomness and fuzziness of the available data for use in reliability and safety analysis. The collaboratively produced research results will be disseminated to a wide audience.

Original text from CORDIS.

Participants

  • LIVERPOOL JOHN MOORES UNIVERSITY · LIVERPOOLCoordinatorUnited Kingdom
  • AALTO KORKEAKOULUSAATIO SR · EspooFinland
  • GOTTFRIED WILHELM LEIBNIZ UNIVERSITAET HANNOVER · HannoverGermany
  • INSTITUTO SUPERIOR TECNICO · LisboaPortugal
  • MAHIDOL UNIVERSITY · NAKHON PATHOMThailand
  • UNIVERSITI KEBANGSAAN MALAYSIA · Selangor Darul EhsanMalaysia
  • UNIVERSITI TEKNOLOGI MALAYSIA · Johor BahruMalaysia
  • UNIVERSITY OF PLYMOUTH · PlymouthUnited Kingdom
  • Wuhan University of Technology · WuhanChina

Links

Data: CORDIS, © European Union