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CORDIS

Safety of Transport Infrastructure on the TEN-T Network

CORDIS fornisce collegamenti ai risultati finali pubblici e alle pubblicazioni dei progetti ORIZZONTE.

I link ai risultati e alle pubblicazioni dei progetti del 7° PQ, così come i link ad alcuni tipi di risultati specifici come dataset e software, sono recuperati dinamicamente da .OpenAIRE .

Risultati finali

Guideline document on DST integration (si apre in una nuova finestra)

A non-technical guideline will be produced to describe the DST integration procedures developed in the SAFE-10-T project. This will be published on the website and advertised in the newsletter.

Report on Machine learning algorithms (si apre in una nuova finestra)

A report describing the machine learning algorithm developed to improve risk assessment at object and network levels will be delivered. At the object level this will detail how to incorporate SHM and climate/traffic info, at the network level forecasts of demand will be addressed. It will be published on the SAFE-10-T website. The deliverable is linked to task 3.3.

Report on Network Model (si apre in una nuova finestra)

The report will describe the macroscopic network traffic model developed within SAFE-10-T. With a focus on nodes and interchanges, the model will identify gaps between demand and current capacity. It will be used to perform stress tests to assess the systems resilience to climate hazards. The deliverable is linked to task 2.2.

Guideline document on resilience assessment (si apre in una nuova finestra)

A non-technical guideline will be produced to describe the SAFE-10-T approach to resilience assessment. This will be published on the website and advertised in the newsletter.

Report on Advanced Safety Model for Tunnels (si apre in una nuova finestra)

This report will describe a probabilistic based displacement model for the Heinenoord tunnel and will include measured displacement data. The deliverable is linked to task 1.3.

Report on the results of Case Study 3 – UK (si apre in una nuova finestra)

The application of the complete safety framework on a complex urban station will be described. It will be published on the SAFE-10-T website. The deliverable is linked to task 4.3.

Mid-term report on dissemination activities and update of the dissemination plan (si apre in una nuova finestra)

Mid-term report on dissemination activities and update of the dissemination plan. Public deliverable.

Guideline document on integration of sensor monitoring systems (si apre in una nuova finestra)

A non-technical guideline will be produced to describe the sensor monitoring systems deployed in the SAFE-10-T project. This will be published on the website and advertised in the newsletter.

Newsletter 3 (si apre in una nuova finestra)

A non-technical newsletter will be produced describing the project objectives and including recent work. The newsletter will be updated every six months, sent in pdf form to an extensive mailing list and posted on the project website. The deliverable is linked to task 5.3.

Report on Advanced Safety Model for Bridges (si apre in una nuova finestra)

The report will a present probabilistic basis for assessment of bridge structures for various travel modes. A number of novel techniques will be considered including; (i) System analysis, (ii) Load modelling, (iii) extreme value modelling and (iv)the effect of extreme weather events on bridges will be investigated in a manner which targets the likely future failures, considering well defined climate change models. The deliverable is linked to task 1.2.

Guideline document on traffic flow model (si apre in una nuova finestra)

A non-technical guideline will be produced to describe the SAFE-10-T projects traffic modelling approach. This will be published on the website and advertised in the newsletter.

Report on DST validation (si apre in una nuova finestra)

A workshop will be held to demonstrate and debug the DST. A range of end user from within and outside the project will be invited. The deliverable is linked to task 5.1.

Newsletter 1 (si apre in una nuova finestra)

A non-technical newsletter will be produced describing the project objectives and including recent work. The newsletter will be updated every six months, sent in pdf form to an extensive mailing list and posted on the project website. It will be published on the SAFE-10-T website. The deliverable is linked to task 5.3.

Newsletter 6 (si apre in una nuova finestra)

A non-technical newsletter will be produced describing the project objectives and including recent work. The newsletter will be updated every six months, sent in pdf form to an extensive mailing list and posted on the project website. The deliverable is linked to task 5.3.

Report on the results of Case Study 1 – Netherlands (si apre in una nuova finestra)

A report describing the application of the network model to at the Port of Rotterdam will be delivered. It will be published on the SAFE-10-T website. The deliverable is linked to task 4.1.

Newsletter 4 (si apre in una nuova finestra)

A non-technical newsletter will be produced describing the project objectives and including recent work. The newsletter will be updated every six months, sent in pdf form to an extensive mailing list and posted on the project website. The deliverable is linked to task 5.3.

Newsletter 2 (si apre in una nuova finestra)

A non-technical newsletter will be produced describing the project objectives and including recent work. The newsletter will be updated every six months, sent in pdf form to an extensive mailing list and posted on the project website. The deliverable is linked to task 5.3.

Report on Embedded Monitoring Systems (si apre in una nuova finestra)

This task will develop a series of methods for self-monitoring of critical infrastructure objects in order to optimise the structural safety models. the application include tunnels, earthworks and bridges. The deliverable is linked to task 1.5.

Report on Advanced Safety Model for Earthworks (si apre in una nuova finestra)

This report will describe a probabilistic framework which will evaluate the stability of earth slopes (cuttings, embankments and dykes) considering environmental loading and variation due to climate change. The deliverable is linked to task 1.4.

Report on the results of Case Study 2 – Croatia (si apre in una nuova finestra)

A report describing the application of the complete safety framework at the port of Rijeka will be delivered. It will be published on the SAFE-10-T website. The deliverable is linked to task 4.2.

Guideline document on integration of Safety Management procedures (si apre in una nuova finestra)

A non-technical guideline will be produced to describe the Safety Management procedures developed in the SAFE-10-T project. This will be published on the website and advertised in the newsletter.

Final report on dissemination activities (si apre in una nuova finestra)

Final report on dissemination activities. Public deliverable.

Report on integration of Big Data from and to open source (si apre in una nuova finestra)

The core platform to collect, correlate, and make available data from multiple sources for the entire project and specifically for integration with the work undertaken in Task 3.3 (Machine Learning) and in Task 3.4 (the Decision Support Tool) is described. It will be published on the SAFE-10-T website. The deliverable is linked to task 3.2.

Report on User demand analysis (si apre in una nuova finestra)

The report will describe the current and future demands of users of the EU road, rail and waterway networks. It will be published on the SAFE-10-T website. The deliverable is linked to task 2.1.

Guideline document for Integrated Safety Management System (si apre in una nuova finestra)

A guideline will be developed to describe the economic and environmental analysis part of the SAFE-10-T global safety framework. It will be published on the SAFE-10-T website. The deliverable is linked to task 2.4.

Report on Decision Support Tool (si apre in una nuova finestra)

The report will detail how the decision support tool operates. The purpose of the tool is to allow IM's to make robust, cost-effective decisions that maintain safety and maximise network capacity. It will be published on the SAFE-10-T website. The deliverable is linked to task 3.4.

Newsletter 5 (si apre in una nuova finestra)

A non-technical newsletter will be produced describing the project objectives and including recent work. The newsletter will be updated every six months, sent in pdf form to an extensive mailing list and posted on the project website. The deliverable is linked to task 5.3.

Report on Whole Life Cycle Model (si apre in una nuova finestra)

The SAFE-10-T LCA model be developed with the aim of integrating owners, users and societal costs related to transport infrastructure.

Guideline document on global safety indicators (si apre in una nuova finestra)

A non-technical guideline will be produced to describe the SAFE-10-T projects global safety indicators. This will be published on the website and advertised in the newsletter.

Report on Probabilistic Consideration of Resilience (si apre in una nuova finestra)

A guidelines will be presented detailing how the information from embedded monitoring systems can be used to optimise resilience assessment of infrastructure elements. The deliverable is linked to Task 1.1.

Report on Global Safety Framework (si apre in una nuova finestra)

A summary report on the global safety framework will be prepared. It will be published on the SAFE-10-T website. The deliverable is linked to task 3.1.

Project website (si apre in una nuova finestra)

A project specific website will be developed. The site will contain a public section with a project description, public deliverables etc. and a private area where participants can upload information.

Pubblicazioni

SAFE-10-T to increase the safety of EU transport infrastructure across road, rail, and inland waterway transport modes

Autori: FEHRL & GDG
Pubblicato in: FEHRL Infrastructure Research Magazine, Numero Numero 10, August 2017, 2017, Pagina/e 12, ISSN 2294-8295
Editore: FEHRL

Trends in enhancement of safety aspects of existing railway infrastructure

Autori: Bacic, M., Gavin, K., Stipanović, I., Kovačević, M.S.
Pubblicato in: Engineering Power: Bulletin of the Croatian Academy of Engineering, Numero 13(3), 2018, Pagina/e 10-18, ISSN 1331-7210
Editore: Croatian Academy of Engineering

Asset management and safety of infrastructure

Autori: FEHRL (supported by project partners)
Pubblicato in: FEHRL Infrastructure Research Magazine, Numero 13, 2019, Pagina/e 14-15, ISSN 2294-8295
Editore: FEHRL

Preliminary application of SAFE-10-T decision support tool

Autori: FEHRL (supported by project partners)
Pubblicato in: FEHRL Infrastructure Research Magazine, Numero 14, 2019, ISSN 2294-8295
Editore: FEHRL

Transport network risk analyses

Autori: Carey, C., Corbally, R., Connolly, L., O’Connor, A.
Pubblicato in: Civil Engineering Research in Ireland 2018, Numero 2018 Proceedings, 2018, Pagina/e 323-328, ISBN 978-0-9573957-3-2
Editore: Civil Engineering Research Association of Ireland

Railway bridge self-assessment using real-time loading data

Autori: Donnelly, R., Connolly, L., O’Connor, A., Rocco, L.
Pubblicato in: Civil Engineering Research in Ireland 2018, Numero 2018 Proceedings, 2018, Pagina/e 67-72, ISBN 978-0-9573957-3-2
Editore: Civil Engineering Research Association of Ireland

Probability Based Resilience Assessment of Infrastructure

Autori: De Paor, C., Connolly, L., Ðuranovic, M., O’Connor, A., Bowe, C.
Pubblicato in: Civil Engineering Research in Ireland 2018, Numero 2018 Proceedings, 2018, Pagina/e 613-617, ISBN 978-0-9573957-3-2
Editore: Civil Engineering Research Association of Ireland

Safety of transport infrastructure on the TEN-T network (SAFE-10-T)

Autori: ROD-IS
Pubblicato in: 1st SENSKIN workshop, 2017
Editore: SENSKIN project

Application of monitoring data to risk assessment of bridges

Autori: Ðuranovic, M., Connolly, L., O’Connor, A, Bowe, C.
Pubblicato in: Civil Engineering Research in Ireland 2018, Numero 2018 Proceedings, 2018, Pagina/e 73-78, ISBN 978-0-9573957-3-2
Editore: Civil Engineering Research Association of Ireland

SAFE-10-T: Developing smart infrastructure solutions to support safe and reliable transport across the European TEN-T network

Autori: Clarke, J., van der Tuin, M., Connolly, L.
Pubblicato in: 13th Intelligence Transport Systems European Congress, Numero 13, 2019
Editore: ERTICO – ITS Europe

Life cycle model for railway tunnel Brajdica in Croatia

Autori: Kovačević, M.S., Stipanović, I., Gavin, K., Skarić, S., Libric, L.
Pubblicato in: Workshop on Life Cycle Management 2019, Numero 2019 Proceedings, 2019
Editore: InfraQuest / Rijkswaterstaat

Involving user delays resulting from infrastructure failure and maintenance in life cycle cost analysis

Autori: van der Tuin, M., Pel, A.J.
Pubblicato in: Workshop on Life Cycle Management 2019, Numero 2019 Proceedings, 2019
Editore: InfraQuest / Rijkswaterstaat

Reliability based life cycle management scenarios for the bridge in Port of Rotterdam

Autori: Stipanović, I., Connolly, L., Skarić, S., Ðuranovic, M.
Pubblicato in: Workshop on Life Cycle Management 2019, Numero 2019 Proceedings, 2019
Editore: InfraQuest / Rijkswaterstaat

Framework for automatic calculation of life-cycle costs of tunnel cracks remediation

Autori: Kovačević, M.S., Bacic, M., Vukomanovic, M., Ceric, A.
Pubblicato in: 14th International Conference Organisation, Technology and Management in Construction & 7th International Project Management Association Research Conference, Numero 2019 Proceedings, 2019, Pagina/e 507-517, ISBN 978-953-7686-08-6
Editore: Croatian Association for Construction Management

A decision support tool for strategic asset management of infrastructure on the TEN-T network

Autori: Tanasic, N., Clarke, J., Connolly, L., van der Tuin, M., Wells, S., Rocco, L., Hajdin, R.
Pubblicato in: Transport Research Arena 2020 (cancelled due to spread of COVID-19 but book of abstracts available online), Numero 2020 Proceedings, 2020
Editore: Finnish Ministry of Transport and Communications

Long-term effects of different bridge maintenance strategies on multimodal transport

Autori: Skarić, S., Stipanović, I., van der Tuin, M., Bakker, J., Bakx-Leenheer, M.
Pubblicato in: Transport Research Arena 2020 (cancelled due to spread of COVID-19 but book of abstracts available online), Numero 2020 Proceedings, 2020
Editore: Finnish Ministry of Transport and Communications

Advanced bridge safety applications of WIM data

Autori: Connolly, L.
Pubblicato in: 8th International Conference on Weigh-In-Motion, Numero 2019 Proceedings, 2019
Editore: International Society for Weigh-In-Motion

Application of WIM data for probabilistic bridge assessment

Autori: Donnelly, R., Connolly, L., O’Connor, A., O’Brien, E.J.
Pubblicato in: 8th International Conference on Weigh-in-Motion, Numero 2019 Proceedings, 2019
Editore: International Society for Weigh-In-Motion

WIM data applications – Practical examples from Ireland

Autori: Corbally, R., Connolly, L., O’Brien, E., O’Connor, A., Cahill, F.
Pubblicato in: 8th International Conference on Weigh-In-Motion, Numero 2019 Proceedings, 2019
Editore: International Society for Weigh-In-Motion

An iterative method to infer distributed mass and stiffness profiles for use in reference dynamic beam-Winkler models of foundation piles from frequency response functions (si apre in una nuova finestra)

Autori: W.H. Wu, L.J. Prendergast, K. Gavin
Pubblicato in: Journal of Sound and Vibration, Numero 431, 2018, Pagina/e 1-19, ISSN 0022-460X
Editore: Academic Press
DOI: 10.1016/j.jsv.2018.05.049

Probabilistic examination of the change in eigenfrequencies of an offshore wind turbine under progressive scour incorporating soil spatial variability (si apre in una nuova finestra)

Autori: L.J. Prendergast, C. Reale, K. Gavin
Pubblicato in: Marine Structures, Numero 57, 2018, Pagina/e 87-104, ISSN 0951-8339
Editore: Elsevier BV
DOI: 10.1016/j.marstruc.2017.09.009

Structural Health Monitoring for Performance Assessment of Bridges under Flooding and Seismic Actions (si apre in una nuova finestra)

Autori: Luke J. Prendergast, Maria P. Limongelli, Naida Ademovic, Andrej Anžlin, Kenneth Gavin, Mariano Zanini
Pubblicato in: Structural Engineering International, Numero 28/3, 2018, Pagina/e 296-307, ISSN 1016-8664
Editore: International Association for Bridge and Structural Engineering
DOI: 10.1080/10168664.2018.1472534

The disruption transport model: computing user delays resulting from infrastructure failures for multi-modal passenger & freight traffic (si apre in una nuova finestra)

Autori: Marieke S. van der Tuin, Adam J. Pel
Pubblicato in: European Transport Research Review, Numero 12/1, 2020, ISSN 1867-0717
Editore: Springer Verlag
DOI: 10.1186/s12544-020-0398-9

Application of Neural Networks for the Reliability Design of a Tunnel in Karst Rock Mass (si apre in una nuova finestra)

Autori: Meho Saša Kovačević, Mario Bačić, Kenneth Gavin
Pubblicato in: Canadian Geotechnical Journal, 2020, ISSN 0008-3674
Editore: NRC Research Press
DOI: 10.1139/cgj-2019-0693

Influence of scour depth and type on p–y curves for monopiles in sand under monotonic lateral loading in a geotechnical centrifuge (si apre in una nuova finestra)

Autori: G. Chortis, A. Askarinejad, L.J. Prendergast, Q. Li, K. Gavin
Pubblicato in: Ocean Engineering, Numero 197, 2020, Pagina/e 106838, ISSN 0029-8018
Editore: Pergamon Press Ltd.
DOI: 10.1016/j.oceaneng.2019.106838

Reliability based life cycle management of bridge exposed to fatigue problem (si apre in una nuova finestra)

Autori: Stipanović, I., Connolly, L., Skarić, S., Ðuranovic, M., Donnelly, R., Bernardini, I., Bakker, J.
Pubblicato in: Frontiers in Built Environment, section Bridge Engineering (accepted), 2020, ISSN 2297-3362
Editore: Frontiers
DOI: 10.3389/fbuil.2020.00100

Investigation of the remaining life of an immersed tube tunnel in The Netherlands (si apre in una nuova finestra)

Autori: K.G. Gavin, W. Broere, M.S. Kovačević, K. de Haas
Pubblicato in: Tunnels and Underground Cities: Engineering and Innovation meet Archaeology, Architecture and Art, 2019, Pagina/e 4831-4838, ISBN 9780-429424441
Editore: CRC Press
DOI: 10.1201/9780429424441-512

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