Tremblatt, C., Mesbah, M., Marshall, W., & Janson, B. (2024). A System Level Analysis of Left-Turning Vehicle-Pedestrian Crashes (Report No. MPC-24-564). Mountain-Plains Consortium. https://rosap.ntl.bts.gov/view/dot/87061
Tremblatt, Carrie, Mohamed Mesbah, Wesley Marshall, and Bruce Janson. A System Level Analysis of Left-Turning Vehicle-Pedestrian Crashes. Report no. MPC-24-564. Mountain-Plains Consortium, 2024. https://rosap.ntl.bts.gov/view/dot/87061.
Tremblatt, Carrie, et al. A System Level Analysis of Left-Turning Vehicle-Pedestrian Crashes. Mountain-Plains Consortium, 2024, Report no. MPC-24-564, ROSA P. https://rosap.ntl.bts.gov/view/dot/87061.
Early research suggested protected left-turn signalization had clear safety benefits over permissive left-turn signalization. Yet, subsequent research on when and where to use protected left-turn signalization focused more on vehicle delay and throughput than on safety. Based on such studies, it would be easy to hypothesize that the use of protected left-turn signalization might be reserved more for intersections with high vehicle traffic than those with high pedestrian usage. Part 1 of this study seeks to test that hypothesis to see when and where traffic engineers implement protected left-turn signalization. Part 2 turns to questions around relative safety and addresses the challenges of assessing the possible safety implications of these implementation differences given the existing selective application. Part 3 takes a closer look at pedestrian severe intersection crashes and signalization practices in the state of Colorado to an understanding of the most impactful safety countermeasures to implement at intersections in terms of signalization and beyond.
In the past decade the population of Texas, as well as traffic volumes within Texas, have steadily increased. Registration of both passenger cars and
...
The relationship between soil erosion rate and bed shear stress is an important problem in sediment transport and scour. However, obtaining reliable m
...
Tremblatt, C., Mesbah, M., Marshall, W., & Janson, B. (2024). A System Level Analysis of Left-Turning Vehicle-Pedestrian Crashes (Report No. MPC-24-564). Mountain-Plains Consortium. https://rosap.ntl.bts.gov/view/dot/87061
Tremblatt, Carrie, Mohamed Mesbah, Wesley Marshall, and Bruce Janson. A System Level Analysis of Left-Turning Vehicle-Pedestrian Crashes. Report no. MPC-24-564. Mountain-Plains Consortium, 2024. https://rosap.ntl.bts.gov/view/dot/87061.
Tremblatt, Carrie, et al. A System Level Analysis of Left-Turning Vehicle-Pedestrian Crashes. Mountain-Plains Consortium, 2024, Report no. MPC-24-564, ROSA P. https://rosap.ntl.bts.gov/view/dot/87061.
ROSA P serves as an archival repository of USDOT-published products including scientific
findings, journal articles, guidelines, recommendations, or other information authored or co-authored by
USDOT or funded partners. As a repository, ROSA P retains documents in their original published format to
ensure public access to scientific information.
Links with this icon indicate that you are leaving a Bureau of Transportation
Statistics (BTS)/National Transportation Library (NTL)
Web-based service.
Thank you for visiting.
You are about to access a non-government link outside of
the U.S. Department of Transportation's National
Transportation Library.
Please note: While links to Web sites outside of DOT are
offered for your convenience, when you exit DOT Web sites,
Federal privacy policy and Section 508 of the Rehabilitation
Act (accessibility requirements) no longer apply. In
addition, DOT does not attest to the accuracy, relevance,
timeliness or completeness of information provided by linked
sites. Linking to a Web site does not constitute an
endorsement by DOT of the sponsors of the site or the
products presented on the site. For more information, please
view DOT's Web site linking policy.
To get back to the page you were previously viewing, click
your Cancel button.