Innovative Research Into Road Restraint Systems - Publikacja - MOST Wiedzy

Wyszukiwarka

Innovative Research Into Road Restraint Systems

Abstrakt

Key to understanding the needs and building road infrastructure management tools to prevent and mitigate run-off-road accidents is to identify hazards and their sources which are a result of wrong design, construction, installation and maintenance of road restraint systems [1]. Building such tools requires advanced studies with field tests, simulations and models to demonstrate the effects of selected parameters on road user safety [2]. Delivered under the Road Innovation programme, two research projects (ROSE and LifeROSE) are designed to help with that. The main aim of the pro-jects is to develop a method to help with an optimal choice of road restraint systems depending on the type and level of hazard, road class, size and structure of vehicle streams and driving condi-tions (vehicle speed) on the road. To that end a number of field tests were carried out designed to identify hazards and build a database of road elements. The article presents a general characteris-tics of the study, fieldwork and simulation and analytical tests required to meet the objectives. It also gives a detailed description of the crash tests conducted in the field for the two projects. A series of crash tests involving vehicles and barriers was carried out to assess how the selected restraint systems behaved and, as a result, to identify how selected barrier design factors and dy-namic vehicle factors affect the functional features of safety barriers under investigation.

Cytowania

  • 0

    CrossRef

  • 0

    Web of Science

  • 1

    Scopus

Cytuj jako

Pełna treść

pobierz publikację
pobrano 60 razy
Wersja publikacji
Accepted albo Published Version
Licencja
Creative Commons: CC-BY-NC-ND otwiera się w nowej karcie

Słowa kluczowe

Informacje szczegółowe

Kategoria:
Publikacja w czasopiśmie
Typ:
artykuły w czasopismach
Opublikowano w:
Journal of KONBiN nr 49, strony 271 - 292,
ISSN: 1895-8281
Język:
angielski
Rok wydania:
2019
Opis bibliograficzny:
Jamroz K., Wilde K., Budzyński M., Jeliński Ł., Chróścielewski J., Burzyński S., Pachocki Ł.: Innovative Research Into Road Restraint Systems// Journal of KONBiN -Vol. 49,iss. 3 (2019), s.271-292
DOI:
Cyfrowy identyfikator dokumentu elektronicznego (otwiera się w nowej karcie) 10.2478/jok-2019-0059
Bibliografia: test
  1. AASHTO. Roadside Design Guide, 2011.
  2. Ambros J., Havránek P., Valentová V., Křivánková Z., Striegler R.: Identification of Hazardous Locations in Regional Road Network -Comparison of Reactive and Proactive Approaches. Transp. Res. Procedia, vol. 14, 2016.
  3. Barnat W., Bogusz P. Dziewulski P., Gieleta R., Kiczko A., Klasztorny M., Niezgoda T., Ochelski S.: Experimental validation of the numerical model of a car impact on a road barrier, Journal of KONES Powertrain and Transport, Vol. 17, No. 1, 2010. otwiera się w nowej karcie
  4. Borkowski W., Hryciów Z., Rybak P., Wysocki J., Wiśniewski A.: Studies on the effectiveness of the innovative road safety system, Journal of KONES Powertrain and Transport, Vol. 21, No. 2, 2014. otwiera się w nowej karcie
  5. Budzyński M., Gobis A., Jamróz K., Jeliński L., Ostrowski K.: Road Restraint Systems as a Basis for Roadside Safety Improvement. WMCAUS 2018, IOP Conference Series: Materials Science and Engineering, 2019. otwiera się w nowej karcie
  6. Budzyński M., Jamróz K., Jeliński Ł.: Assessment of Road Restraint Systems in Polish Conditions. Journal of KONBiN, vol. 45, iss. 1, 2018, doi.org/10.2478/jok-2018-0017. otwiera się w nowej karcie
  7. Budzyński M., Jamróz K., Marcin A.: Effect of the Road Environment on Road Safety in Poland. WMCAUS 2017: IOP Conference Series: Materials Science and Engineering, vol. 245, 2017. otwiera się w nowej karcie
  8. Budzyński M., Jamróz K., Jeliński L., Antoniuk M.: Why are Trees Still Such a Major Hazard to Drivers in Poland?. Transport Research Arena 2016. Transportation Research Procedia, 2016. otwiera się w nowej karcie
  9. Burbridge A., Troutbeck R.: Decompartmentalising road safety barrier stiffness in the context of vehicle occupant risk. Proceedings of the 2016 Australasian Road Safety Conference, Australia 2017. otwiera się w nowej karcie
  10. De Ridder S., Van der Horst R., Naing C., Thomson R.: Identify envelope of vehicle and driver response prior to collisions. RISER, 2006.
  11. EN 1317-2:2010. Road restraint systems -Part 2: Performance classes, impact tests acceptance criteria and test methods for safety barriers including vehicle parapets. otwiera się w nowej karcie
  12. Fitzpatrick C. D.: The Effect of Roadside Elements on Driver Behavior and Run-Off- the-Road Crash Severity, 2014.
  13. Francesca P., Torre L.: SAVeRS Selection of Appropriate Vehicle Restraint Systems. 2014.
  14. Goubel C., Di Pasquale E., Massenzio M., Ronel S.: Comparison of crash tests and simulations for various vehicle restraint systems. 7th European LS-DYNA Conference, Salzburg, Austria 2009. otwiera się w nowej karcie
  15. Grzyl B., Kristowski A., Jamróz K., Gobis A.: Methods of estimating the cost of traffic safety equipment's life cycle. MATEC Web Conf., 2017. otwiera się w nowej karcie
  16. Hallquist J. O.: LS-DYNA theory manual. Livermore Software Technology Corporation, 2006.
  17. Holdridge J. M., Shankar V. N., Ulfarsson G. F.: The crash severity impacts of fixed roadside objects. J. Safety Res., vol. 36, no. 2, 2005. otwiera się w nowej karcie
  18. Jamieson N., Waibl G., Davies R.: Use of roadside barriers versus clear zones, 2013.
  19. Jamróz K., Burzyński S., Witkowski W., Wilde K.: Numerical methods for the assessment of bridge safety barriers. In M. Kleiber et al., eds. Advances in Mechanics: Theoretical, Computational and Interdisciplinary Issues, Gdańsk 2015. otwiera się w nowej karcie
  20. Jurewicz C., Troutbeck R. J., Jurewicz C., Troutbeck R.: A Safe System-based approach to selection of clear zones, safety barriers and other roadside treatments. Australas. Road Saf. Res. Polic. Educ. Conf., 2012.
  21. Karim H., Magnusson R., Natanaelsson K.: Life-Cycle Cost Analyses for Road Barriers. J. Transp. Eng., vol. 138, no. 7, 2012. otwiera się w nowej karcie
  22. Klasztorny M., Zielonka K., Nycz D. B., Posuniak P., Romanowski R. K.: Experimental validation of simulated TB32 crash tests for SP-05/2 barrier on horizontal concave arc without and with composite overlay. Arch. Civ. Mech. Eng, vol. 18, 2018, doi:10.1016/j.acme.2017.07.007. otwiera się w nowej karcie
  23. La Torre F.: Forgiving Roadsides Design Guide. CEDR, 2012. otwiera się w nowej karcie
  24. Niezgoda T., Barnat W., Dziewulski P., Kiczko A.: Numerical modelling and simulation of road crash tests with the use of advanced CAD/CAE systems. Journal of KONBiN, 3 (23), 2012, DOI 10.2478/jok-2013-0041. otwiera się w nowej karcie
  25. Norwegian Public Roads Administration, Vehicle Restraint Systems and Roadside Areas. NPRA Directorate of Public Roads, 2014. otwiera się w nowej karcie
  26. Nycz D. B.: Comparison of functionality of type a and b guide rails of steel road safety barriers. The Baltic Journal of Road and Bridge Engineering, vol. 13(3), 2018. otwiera się w nowej karcie
  27. Ogden K. W.: Safer roads: a guide to road safety engineering. Avebury Technical, 1996. otwiera się w nowej karcie
  28. PD CEN/TR 16303:2012 Road restraint systems -Guidelines for computational mechanics of crash testing against vehicle restraint system, 2012. otwiera się w nowej karcie
  29. Ray M. H., Asce M., Silvestri C., Conron C. E. Mongiardini M.: Experience with Cable Median Barriers in the United States: Design Standards, Policies, and Performance. Journal of Transportation Engineering, 2009. otwiera się w nowej karcie
  30. Ren Z., Vesenjak M.: Computational and experimental crash analysis of the road safety barrier. Engineering Failure Analysis, vol. 12, iss. 6, 2005. otwiera się w nowej karcie
  31. Sicking D. L., Ross Jr. H. E.: Benefit-Cost Analysis of Roadside Safety Alternatives. Transportation Research Record, 1986.
  32. Vasenjak M., Borovinšek M., Ren Z.: Computational simulations of road safety barriers using LS-DYNA, 6. LS-DYNA Anwenderforum, Frankenthal, DYNAmore GmbH, 2007.
Weryfikacja:
Politechnika Gdańska

wyświetlono 97 razy

Publikacje, które mogą cię zainteresować

Meta Tagi