Advancing Road Safety in Urban Area: The Impact of Roundabouts on Intersection Design

Keywords: Accident, Collision, Intersection, Roundabout, Safety, Traffic

Abstract

Intersection represents a significant challenge around road traffic safety, posing a major problem, particularly during peak hour of urban road traffic. The high risk of accidents at this congested intersection is a serious concern, given that they involve a variety of road users, including vehicles and pedestrians. To address these challenges and minimize the risks related to intersections, roundabout have emerged as a significant effort. To address these challenges and minimize risks related to intersections, roundabouts have emerged as a notable solution. This approach does not only contribute to improved traffic flow but also enhances overall road safety by providing a more efficient alternative compared to conventional intersection designs. This study takes a comprehensive look at the safety performance of roundabouts as an alternative intersection design, by systematically reviewing relevant literature from Scopus and Google Scholar, aiming to explain how roundabout intersections contribute to crash reduction and traffic safety improvement. The analysis reveals that roundabouts generally lead to a significant reduction in severe collisions and enhance traffic flow efficiency. This is primarily due to their design, which minimizes conflict points and promotes lower vehicle speeds, and positively impacts the visibility and safety of pedestrian crossings. However, the roundabout has challenges, such as the requirement for drivers to adapt to new traffic patterns and the public's perception of the different aspects of the roundabout design. The findings indicate that roundabouts substantially improve road safety, evidenced by significant reductions in fatal and injury crashes. The literature also emphasizes the importance of customizing roundabout design and implementation to specific conditions, highlighting that such adapting is critical to maximizing benefits and ensuring positive impacts on road safety which is important to developed in further research.

Author Biography

Noor Mahmudah, Master Program of Civil Engineering Universitas Muhammadiyah Yogyakarta, Yogyakarta, INDONESIA
Project Manager of ERASMUS+ CBHE ASIASAFE (UMY) Master Program in Civil Engineering with Specialization in Road Traffic Safety Universitas Muhammadiyah Yogyakarta Brawijaya Street, Tamantirto, Bantul, Yogyakarta, INDONESIA 55183

References

Adsit, S., Konstantinou, T., Gkritza, K. and Fricker, J.D. (2021), ‘Public Acceptance of INDOT’s Traffic Engineering Treatments and Services’.

Ahac, S., Ahac, M., Domitrovic, J. and Dragčević, V. (2021), ‘Modeling the Influence of Roundabout Deflection on Its Efficiency as a Noise Abatement Measure’, Sustainability 13, 5407. URL: https://doi.org/10.3390/su13105407

Ahmed, H. (2018), ‘Multi-Objective optimization of single-lane roundabout geometric design: Safety, mobility, and environmental sustainability’. CSCE 2018 fredericton annual conference.

Akgün, N., Dissanayake, D., Thorpe, N. and Bell, M.C. (2018), ‘Cyclist casualty severity at roundabouts - To what extent do the geometric characteristics of roundabouts play a part?’, Journal of safety research 67, 83-91. URL: https://doi.org/10.1016/j.jsr.2018.09.004

Amanamba, E.C. (2016), ‘Spiral lane markings: A review of lane discipline’, Civil and Environmental Research 8(5), 106-116.

Anjana, S. and Anjaneyulu, M.V.L.R. (2015), ‘Development of safety performance measures for urban roundabouts in India’, Journal of Transportation Engineering-asce 141, 04014066-04014066. URL: https://doi.org/10.1061/(ASCE)TE.1943-5436.0000729

Apardian, R.E. and Alam, B.M. (2015), ‘Methods of Crossing at Roundabouts for Visually Impaired Pedestrians: Review of Literature’, International Journal of Transportation Science and Technology 4, 313-336. URL: https://doi.org/10.1260/2046-0430.4.3.313

Board, T.R., National Academies of Sciences, E. and Medicine (2010), ‘Roundabouts: An Informational Guide – Second Edition’, Washington, DC: The National Academies Press.

Comi, A., Polimeni, A. and Balsamo, C. (2022), ‘Road Accident Analysis with Data Mining Approach: evidence from Rome’, Transportation Research Procedia.

Day, C.M., Hainen, A.M. and Bullock, D.M. (2013), ‘Best practices for roundabouts on state highways’. Purdue University. Joint Transportation Research Program.

Debada, E. and Gillet, D. (2019), ‘Merging into Single-Lane Roundabouts in the Presence of Uncertainty’, 2019 IEEE Intelligent Transportation Systems Conference (ITSC), 3168-3175. URL: https://doi.org/10.1109/ITSC.2019.8917016

Demir, H.G. and Demir, Y.K. (2020), ‘A Comparison of Traffic Flow Performance of Roundabouts and Signalized Intersections: A Case Study in Nigde’, The Open Transportation Journal. URL: http://dx.doi.org/10.2174/1874447802014010120

Deshmukh, A. (2017), ‘The effects of vehicle traffic flow characteristics on capacity at Rotary in Bhubaneswar city (India)’, International journal of applied research 3, 452-462.

Distefano, N. and Leonardi, S. (2019), ‘Experimental investigation of the effect of roundabouts on noise emission level from motor vehicles’, Noise Control Engineering Journal. URL: https://doi.org/10.3397/1/376725

Distefano, N., Leonardi, S. and Pulvirenti, G. (2018), ‘Factors with the greatest influence on drivers' judgment of roundabouts safety. An analysis based on web survey in Italy’, IATSS Research. URL: https://doi.org/10.1016/J.IATSSR.2018.04.002

Elvik, R. (2017), ‘Road safety effects of roundabouts: A meta-analysis’, Accident; analysis and prevention 99 Pt A, 364-371. URL: https://doi.org/10.1016/j.aap.2016.12.018

Eva, P. and Andrea, K. (2017), ‘Case study: Capacity characteristics comparison of single-lane roundabout and turbo-roundabouts’, Procedia Engineering 192, 701-706.

Fernandes, P. et al. (2016), ‘Driving around turbo-roundabouts vs. conventional roundabouts: Are there advantages regarding pollutant emissions?’, International journal of sustainable transportation 10(9), 847-860. URL: https://doi.org/10.1080/15568318.2016.1168497

Fernandes, P. et al. (2020), ‘Impacts of roundabouts in suburban areas on congestion-specific vehicle speed profiles, pollutant and noise emissions: An empirical analysis’, Sustainable Cities and Society 62, 102386. URL: https://doi.org/10.1016/j.scs.2020.102386

Gallelli, V., Iuele, T. and Vaiana, R. (2016), ‘Conversion of a semi-two lanes roundabout into a turbo-roundabout: a performance comparison’, Procedia computer science 83, 393-400. URL: https://doi.org/10.1016/j.procs.2016.04.201

Giuffrè, T., Trubia, S., Canale, A. and Persaud, B. (2017), ‘Using microsimulation to evaluate safety and operational implications of newer roundabout layouts for European Road networks’, Sustainability 9(11), 2084. URL: https://doi.org/10.3390/su9112084

Gross, F., Lyon, C., Persaud, B. and Srinivasan, R. (2013), ‘Safety effectiveness of converting signalized intersections to roundabouts’, Accident; analysis and prevention 50, 234-241. URL: https://doi.org/10.1016/j.aap.2012.04.012

Guerrieri, M. and Sartori, M. (2020), ‘Underground Roundabouts: Analysis of Several Layouts for A Case Study in Urban Area’, The Open Transportation Journal 14, 143-153. URL: https://doi.org/10.2174/1874447802014010143

Hatami, H. and Aghayan, I. (2017), ‘Traffic Efficiency Evaluation of Elliptical Roundabout Compared with Modern and Turbo Roundabouts Considering Traffic Signal Control’, Promet-traffic & Transportation 29, 1-11.

Helliwell, J.R. (2019), ‘Roundabouts’, The Whats of a Scientific Life. URL: https://doi.org/10.1201/9780429279218-7

Hrapović, K. (2022), ‘Distribution of the Roundabout Traffic’, Put i saobraćaj. URL: https://doi.org/10.31075/PIS.68.04.02

Hu, W., McCartt, A.T., Jermakian, J.S. and Mandavilli, S. (2014), ‘Public opinion, traffic performance, the environment, and safety after construction of double-lane roundabouts’, Transportation Research Record 2402(1), 47-55. URL: https://doi.org/10.3141/2402-06

Issa, Y. (2018), ‘Relation between Driver’s Characteristics and Roundabout’s Accidents’.

Kwakwa, O.K. and Adams, C.A. (2016), ‘Assessment of Turbo and Multilane Roundabout Alternatives to Improve Capacity and Delay at a Single Lane Roundabout Using Microsimulation Model Vissim: A Case Study in Ghana’, American Journal of Civil Engineering and Architecture 4, 106-116.

Li, F., Wang, L.-y., Wang, W. and Jiang, X. (2016), ‘Critical Safety Distance Model of Human-Vehicle Unit Based on Traffic Conflict at Urban Intersections’.

Lochrane, T.W. et al. (2014), ‘Determination of mini-roundabout capacity in the United States’, Journal of Transportation Engineering 140(10), 04014051.

Mahmudah, N., Anjasmoro, B. and Muchlisin, M. (2021), ‘Traffic Congestion Evaluation at the Unsymmetrical Signalized Intersection of Sentul, Yogyakarta’, IOP Conference Series: Materials Science and Engineering 1144. URL: 10.1088/1757-899X/1144/1/012099

Mak, M., McHeim, B. and Barnes, A. (2021), ‘Guide to road design part 7: new and emerging treatments’.

Mako, E. (2015), ‘Evaluation of human behaviour at pedestrian crossings’. 2015 6th IEEE International Conference on Cognitive Infocommunications (CogInfoCom), IEEE.

Michalaka, D. et al. (2016), ‘Roundabouts as a Form of Access Management’, Transportation Research Record 2556, 1 - 9. URL: https://doi.org/10.3141/2556-01

Montella, A., Turner, S., Chiaradonna, S. and Aldridge, D. (2013), ‘International overview of roundabout design practices and insights for improvement of the Italian standard’, Canadian Journal of Civil Engineering 40(12), 1215-1226.

Park, S., Musey, K., Press, J. and Mcfadden, J. (2015), ‘Exploring Roundabouts Safety and Operation in the Context of Design Consistency’, Ite Journal-institute of Transportation Engineers 85.

Pilko, H. (2017), ‘Roundabout design guidelines: Case study of Croatia’, Transport Infrastructure and Systems. CRC Press. pp. 9-16.

Pilko, H., Šarić, Ž. and Zovak, G. (2018), ‘Turbo Roundabouts: A Brief Safety, Efficiency and Geometry Design Review’, Roundabouts as Safe and Modern Solutions in Transport Networks and Systems. URL: https://doi.org/10.1007/978-3-319-98618-0_1

Polders, E., Daniels, S., Casters, W. and Brijs, T. (2015), ‘Identifying Crash Patterns on Roundabouts’, Traffic Injury Prevention 16, 202 - 207. URL: https://doi.org/10.1080/15389588.2014.927576

Pratelli, A., Casella, S., Farina, A. and Lupi, M. (2018), ‘Conventional and unconventional roundabouts: a review of geometric features and capacity models’, International Journal of Transport Development and Integration 2(3), 225-239. 10.2495/TDI-V2-N3-225-239

Rodrigues, M., McGordon, A., Gest, G. and Marco, J. (2018), ‘Autonomous Navigation in Interaction-Based Environments—A Case of Non-Signalized Roundabouts’, IEEE Transactions on Intelligent Vehicles 3, 425-438. URL: https://doi.org/10.1109/TIV.2018.2873916

Sadeq, H. and Sayed, T. (2016), ‘Automated Roundabout Safety Analysis: Diagnosis and Remedy of Safety Problems’, Journal of Transportation Engineering-asce 142, 04016062. URL: https://doi.org/10.1061/(ASCE)TE.1943-5436.0000887

Suh, W. et al. (2015), ‘Impact of Including Exiting Vehicles in Single-Lane Roundabout Capacity Models’, Transportation Research Record 2517, 87 - 95. URL: https://doi.org/10.3141/2517-10

Šurdonja, S., Babić, S., Deluka-Tibljaš, A. and Cuculić, M. (2012), ‘Mini-roundabouts in urban areas’. 2nd Conference on Road and Rail Infrastructure–Dubrovnik, Croatia.

Tarko, A.P., Inerowicz, M. and Lang, B. (2008), ‘Safety and operational impacts of alternative intersections’. URL: https://doi.org/10.5703/1288284314313

Tarko, A.P. et al. (2015), ‘Evaluation of alternative intersections and interchanges: volume 1--roundabout capacity and rollover analysis for heavy vehicles’. Purdue University. Joint Transportation Research Program.

Tollazzi, T. (2015), ‘Alternative Types of Roundabouts at Development Phases’.

Vignali, V. et al. (2020), ‘The safety and conspicuity of pedestrian crossing at roundabouts: The effect of median refuge island and zebra markings’, Transportation Research Part F-traffic Psychology and Behaviour 68, 94-104. URL: https://doi.org/10.1016/j.trf.2019.12.007

Vujanic, M., Savicevic, M., Antić, B. and Pešić, D. (2016), ‘Safety Effectiveness of Converting Conventional Intersections to Roundabouts: Case Study in the City of Niš’, Promet-traffic & Transportation 28, 529-537. URL: https://doi.org/10.7307/ptt.v28i5.1849

Wang, Z. et al. (2017), ‘Multi-objective Signal Timing Model of Single Intersection Based on Genetic Algorithm’.

Yang, X. and Magalotti, M.J. (2016), ‘A Service Life Analysis of Roundabouts Retrofits for Signalized Intersections’, Procedia Engineering 145, 452-459. URL: https://doi.org/10.1016/J.PROENG.2016.04.017.

Zhao, Y.-P., Andrey, J.C. and Deadman, P.J. (2018), ‘Whether conversion and weather matter to roundabout safety’, Journal of safety research 66, 151-159. URL: https://doi.org/10.1016/j.jsr.2018.07.001

Published
2025-05-09
How to Cite
Aziz, F., Mahmudah, N., Augeri, M. G., & Comi, A. (2025). Advancing Road Safety in Urban Area: The Impact of Roundabouts on Intersection Design. Journal of the Civil Engineering Forum, 11(2), 191-202. https://doi.org/10.22146/jcef.15904
Section
Articles